COMPANY PROFILE / PEROVSKITE SOLAR CELLS
Renshine Solar
A Nanjing University spin-out that holds records in all-perovskite tandems, stacking perovskite on perovskite
Renshine Solar is a Chinese perovskite start-up founded at the end of 2021. Its founder and chairman, Tan Hairen, is a professor at Nanjing University, and the company is known for work with the university on "all-perovskite tandems", which stack two perovskite layers and use no silicon at all. NLR's (formerly NREL's) efficiency data list a cell record of 30.1% for this approach (jointly credited with Nanjing University) and a module record of 22.8% for the same approach. On the business side, though, what it actually produces and ships is a glass-type single-junction module measuring 1.2 m × 0.6 m, made on a 150 MW line, while a GW-scale line is under construction. Drawing on the company's own announcements, this profile sets out both the cutting-edge research and the slower build-up of a volume product.
- Renshine Solar in 30 seconds, and where it stands in perovskite solar cells
- The logo and how the name is written
- Where the company sits in the perovskite solar cell field
- Scale (unlisted, so read the production lines)
- Resources committed to perovskites
- What it has done so far
- What comes next
- What the company is aiming for in perovskite solar cells
- Map of perovskite partnerships
- Technology, products and services
- The risks this company carries
- Glossary, references and claim-to-source audit
1. Renshine Solar in 30 seconds, and where it stands in perovskite solar cells
(university spin-out)Founded and chaired by Professor Tan Hairen of Nanjing University
plus tandem and flexibleSingle-junction modules of 1.2 m × 0.6 m. Also all-perovskite and perovskite-silicon tandems
GW-scale line being built150 MW line completed January 2024. GW-scale construction began February 2025
(all-perovskite)0.049 cm², certified by JET. Listed in NLR's table jointly with Nanjing University
Companies working on perovskite solar cells fall into three broad types: established PV makers, perovskite start-ups, and materials and electronics firms coming in from other industries. Renshine Solar is a perovskite start-up, and one born in a university laboratory Sourced. Where established makers such as LONGi and Trina Solar stack perovskite on top of silicon, Renshine's signature technology is the all-perovskite tandem, which uses no silicon and instead stacks two perovskites with different properties. What it actually sells today, however, is a glass-type single-junction module (a single perovskite layer). Keep in mind that the headline research and the volume product are two different things.
2. The logo and how the name is written

The logo is the company's trademark. Rather than recreate it with an image generator, this article uses the logo image from the header of the official website, saved as img/renshine_solar_logo.png. The logo's lettering is white, so it is shown on a dark background.
A note on names: the legal entity is registered in Chinese, and its name corresponds to Renshine Solar (Suzhou) Co., Ltd.; the lettering in the logo reads RENSHINE SOLAR. The company says its research base, the Jiangsu Perovskite Industrial Technology Research Institute, is built on a separate legal entity, Jiangsu Renshine Photovoltaic Technology Co., Ltd. This article uses the English brand name, Renshine Solar, throughout.
Official site: https://www.renshinesolar.com/3. Where the company sits in the perovskite solar cell field
The company has four product lines Sourced: (1) glass-type single-junction modules (1.2 m × 0.6 m; the mainstay of production); (2) all-perovskite tandems (the headline research; a two-terminal stacked design); (3) perovskite/silicon tandems (it has announced a four-terminal module record and supplied the roof of a factory in Lijiang); and (4) flexible modules (the company says above 18% for single-junction modules of about a square metre). Its curtain-wall equipment for BIPV (building-integrated photovoltaics) was added in 2026 to Jiangsu Province's "Three Firsts, Two News" list of recognised new equipment and products.
4. Scale (unlisted, so read the production lines)
Renshine Solar is unlisted and does not publish its revenue, profit or loss, headcount or the amounts it has raised Not yet confirmed. Instead, this section gauges its size from the scale of the production lines and the investment amounts that the company has announced.
| Line | What it is | When |
|---|---|---|
| 10 MW research pilot line | Described by the company as "the world's first research line for all-perovskite tandems". Produces 30 cm × 40 cm modules | Fully running from February 2023 |
| 150 MW production line | In Changshu. Produces 1.2 m × 0.6 m single-junction modules. Equipment 100% made in China and designed in house. About nine months from groundbreaking | Construction began April 2023; completed 11 January 2024 |
| GW-scale line | In the Changshu Economic and Technological Development Zone. Total investment of more than CNY 1 billion, with expected annual output value above CNY 2 billion once complete | Agreement signed 28 May 2024; construction began on 20 February 2025 together with the headquarters. As of August 2026, "construction has started" |
| Item | What has been published |
|---|---|
| Patents | More than 130 core patent applications (company profile page), up from more than 60 as of May 2024 |
| Markets | The company says its business extends to the United States, Japan, India, France, South Korea, Germany and elsewhere |
| Largest installations | Its own 1.2 MW rooftop plant (9,300 modules) and a BIPV roof on a former factory in Shanghai (about 6,000 modules, more than 4,000 m²) |
| Revenue, profit or loss, headcount, funds raised | Not disclosed |
The 1.2 m × 0.6 m production module is rated at 158.4 W for the high-efficiency version announced in June 2026, and averaged 130 W at the 1.2 MW plant in 2024 Sourced. Dividing 150 MW by 130 W gives about 1.15 million modules, and by 158.4 W about 950,000, as a rough annual ceiling Our calculation. The Shanghai BIPV roof (about 6,000 modules) is 0.5 to 0.6% of that, showing that even a single large project is small relative to the line's capacity. Utilisation and shipments are not published, so this is a guide based on maximum capacity, not actual output.
5. Resources committed to perovskites
| Type of resource | What it is | Category |
|---|---|---|
| People | Chairman Tan Hairen (professor at Nanjing University; recipient of the China Youth May Fourth Medal and the China Youth Science and Technology Award), president Chen Baoyin (co-founder) and Dr Liu Ye, director of the R&D centre. Tan Hairen's team was selected as a "Gusu major innovation team" in Suzhou's talent programme (2024). Headcount not disclosed | Sourced (headcount not disclosed) |
| Money (the factory) | Total investment of more than CNY 1 billion in the GW-scale line (planned amount announced by the company) | Sourced (planned amount) |
| Money (research and fundraising) | R&D spending, amounts raised and a list of investors have not been published. At the 2024 completion ceremony, the chairman of Sanhang Capital spoke as a shareholder representative | Not disclosed |
| Universities and research institutes | Nanjing University (a joint university-company laboratory and many co-authored papers); the Institute of Semiconductors, Chinese Academy of Sciences (joint research on the space experiment flown with Shenzhou-23); and Swansea University (testing for space use in a laboratory funded by the European Space Agency, 2024) | Sourced |
| Research base | Set up the Jiangsu Perovskite Industrial Technology Research Institute with support from the Nanjing municipal government. Also recognised as a Jiangsu provincial postdoctoral innovation practice base | Sourced |
| Public funding | Leads a 2025 Jiangsu Province major science and technology special project on "key technologies for high-efficiency flexible perovskite tandem modules for multiple applications". Takes part, with its tandem technology, in a Yunnan Province major science and technology special project on green hydrogen. No amounts are disclosed for either | Sourced (amounts not disclosed) |
| Outbound investments and acquisitions | No announcement of investment in or acquisition of other companies has been found | Not confirmed |
6. What it has done so far
Renshine's records come in a wide range of sizes. Read small research cells and production-size modules separately.
| When | What happened | Area and certification |
|---|---|---|
| End of 2021 | Company founded | Company profile page |
| 2022 | First small-area all-perovskite tandem module made (co-authored with Nanjing University; Science, 2022). In October 2022 Changshu was chosen as the site of the 150 MW line | Company-reported |
| February 2023 | The 10 MW research pilot line is fully running, making 30 cm × 40 cm modules | Company-reported |
| March 2023 | All-perovskite tandem technology selected as one of China's Top 10 Scientific Advances of 2022 | Ministry of Science and Technology announcement, as described by the company |
| Measured October 2023 | All-perovskite tandem cell at 30.1% (stabilised efficiency) | 0.0493 cm² / JET. Listed in NLR's table as "Nanjing Univ / Renshine" |
| 11 January 2024 | 150 MW production line completed | Company-reported |
| September 2024 | A single-junction module picked at random from the production line measures 17.2% over its full area (19.3% over the active area) | 0.72 m² / NREL (company-reported) |
| 29 September 2024 | Its own 1.2 MW rooftop plant is connected to the grid (9,300 modules of 1.2 m × 0.6 m) | Company-reported |
| 30 December 2024 | The 1.2 m × 0.6 m module receives full IEC 61215 and 61730 certification from TÜV Rheinland, with power loss below 5% across the tests | Company-reported |
| 20 February 2025 | Construction of the headquarters and GW-scale line begins | Company-reported |
| 2025 | Publishes an all-perovskite tandem result above 30% in Nature (dipole passivation), and a green-solvent process in Science | Papers (as presented by the company) |
| No date given | 31.7% on a four-terminal perovskite/silicon tandem module | 384.02 cm² / TÜV SÜD (company-reported) |
| 2026 (efficiency tables, Version 68) | Single-junction module at 22.1% (813.8 cm², JET) and production-size single-junction module at 19.3% (7,200 cm², Fraunhofer ISE). Holds the all-perovskite tandem module record of 22.8% (809.7 cm²) | 22.1% and 22.8% confirmed in NLR's champion module efficiency chart |
| May to June 2026 | Takes part in an outside-the-cabin test of cells carried to China's space station by Shenzhou-23. Publishes a 26.2% large-area all-perovskite tandem module (JET) in Nature | Company-reported |
| June 2026 | Shows its 1.2 m × 0.6 m production module "Shuodian 2.0" in Europe for the first time: above 22% full-area efficiency, 158.4 W | 0.72 m² / TÜV SÜD (company-reported) |
| August 2026 | Publishes the technology behind 22.0% full-area efficiency on 0.72 m² (surface passivation with lead carboxylates) in Nature | Company-reported |
| September 2026 | 26.4% on an all-perovskite tandem module | Aperture area 809 cm² / TÜV SÜD (company-reported) |
Three records could be confirmed in third-party tables Sourced. NLR's cell efficiency data table lists an all-perovskite tandem by "Nanjing Univ / Renshine" at 30.1% (JET, 0.04934 cm²). NLR's champion module efficiency chart lists the perovskite two-junction module record of 22.8% (Renshine) and the perovskite single-junction module record of 22.1% (Renshine/Nanjing U). The 30.1% cell is a research device smaller than 0.05 cm², and its efficiency is not that of a production product. The efficiency of the production module (0.72 m²) has risen from 17.2% measured by NREL in 2024 to above 22% as reported by the company in 2026. Note also that the timeline on the company profile page shows the same content as 2025 repeated under 2021 and 2022 (probably a display fault on the site), so this article uses only those timeline items whose dates are backed up by individual news items.
7. What comes next
At an August 2026 meeting of the Jiangsu Provincial Department of Science and Technology, president Chen Baoyin said that "the 150 MW production line is shipping steadily and construction of the GW-scale mass-production line has begun", and that the company is "at a crucial stage of moving from technological leadership to market leadership". He asked for government support on listing, industrial support and more sites for demonstration Sourced. When the GW-scale line agreement was signed in 2024, the company said "annual output value will exceed CNY 2 billion once complete" Not yet confirmed, but it has given no date for operation.
None of the following appears in Renshine Solar's official announcements Not yet confirmed.
Revenue, profit or loss, and shipments; amounts raised and investors; headcount; the start date and actual investment of the GW-scale line; when mass production of all-perovskite tandems will start; and product prices. Press reports give figures for investment and planned start-up, but some do not match the company's announcements, and this article does not use them.
8. What the company is aiming for in perovskite solar cells
This section goes beyond what the company says directly. It sets out inferences that can be drawn from primary sources, each with its basis.
| What can be read | Primary evidence behind it | Category |
|---|---|---|
| A two-step plan: earn with single-junction modules, then leap ahead with all-perovskite tandems | Production and sales are of the 1.2 m × 0.6 m single-junction module. At completion, the company said the 150 MW line would later be converted to all-perovskite tandems | Inference |
| The first markets are buildings (BIPV) and distributed generation | The Shanghai factory roof, provincial recognition of its BIPV curtain-wall equipment, the partnership with China Architecture Design & Research Group, and carports and homes: most installations are building-related | Inference |
| It is staking out space as a long-term, high-value market | The outside-the-cabin test on Shenzhou-23, the provincial major project on flexible tandems for space, and participation in standardisation work for space photovoltaics | Inference |
| It sells by showing, with field data, that its modules generate more than silicon | At the Lianyungang demonstration plant, the company reported that energy yield per unit over four months was higher than the N-type and P-type silicon references, and 15% higher on cloudy days | Sourced (operating data published by the company) |
| It is aiming for a listing before long | In August 2026 it attended a provincial meeting on nurturing listing candidates as a representative "emerging technology company" and asked for listing support | Inference |
The January 2024 announcement of the 150 MW line's completion ends by saying that "this line will later be converted to produce higher-efficiency all-perovskite tandem products" Sourced. In an all-perovskite tandem, both the upper and lower layers are perovskite, and no silicon wafer is used. That raises the possibility of lifting efficiency by adding layers on the same glass substrates and the same coating and evaporation equipment used for single-junction modules. This article reads Renshine as mapping out a path in which it first secures equipment, yields and sales channels through single-junction production, then runs tandems on the same line Not yet confirmed. The narrow-bandgap lead-tin perovskite used as the lower layer oxidises easily, however, and the company itself, in presenting its Nature paper, names "film uniformity over large areas and charge transport" as challenges. No date for the conversion has been given, and this remains our interpretation.
9. Map of perovskite partnerships
10. Technology, products and services
| Product or technology | What the primary sources say |
|---|---|
| Single-junction modules (mainstay) | 1.2 m × 0.6 m. "Shuodian 2.0" reaches above 22% full-area efficiency and 158.4 W (TÜV SÜD). Certified or registered under IEC 61215/61730 (TÜV Rheinland), UL, CQC and JP-AC |
| BIPV | Offers integrated solutions from roofs and curtain walls to fences and daylighting roofs. Its complete equipment set for commercial perovskite BIPV curtain walls was included in Jiangsu's 2026 "Three Firsts, Two News" list of new technologies and products |
| All-perovskite tandems | A two-terminal design stacking a wide-bandgap perovskite and a narrow-bandgap (lead-tin) perovskite. Cells at 30.1%; modules from 22.8% to 26.4% (depending on area) |
| Perovskite/silicon tandems | 31.7% on a four-terminal module (384.02 cm², TÜV SÜD). Supplied to a green hydrogen plant in Lijiang (118.4 kWp) and to an agrivoltaic project by Beijing Energy Holding in Yanqing, Beijing |
| Flexible | Above 18% for single-junction modules of about a square metre and above 23% for large-area all-perovskite tandems (company-reported). Under development for space |
| Manufacturing technology | Film formation in ambient air using safe, bio-derived solvents (Science), and large-area surface passivation using "floating organic salts" and lead carboxylates (Nature, August 2026) |
The efficiency of the 0.72 m² production module rose from 17.2% (NREL, 2024) to 22.0% (2026, the certified value published in Nature). According to the company, two things made the biggest difference Sourced. The first is the solvent: a high-vapour-pressure blend of 2-methoxyethanol, 1,3-dioxolane and DMSO, combined with vacuum drying, makes a layer rich in formamidinium iodide (FAI) rise naturally to the surface of the film. The second is surface passivation: instead of moisture-sensitive ammonium compounds, chemically stable lead carboxylates are reacted with that layer.
The problems on a large area are that a treatment that works on a small cell does not work evenly across a full square metre, and that films are exposed to moisture in the ambient air of a factory. The idea of "first letting reaction sites line up naturally at the surface, then treating them with a moisture-resistant material" comes from re-selecting materials to fit the conditions of the coating process, and it is a good example of materials design built around mass production. For the principles of solution coating, see also our explainer on solution-processed film deposition.
11. The risks this company carries
| Risk | Substance | Category |
|---|---|---|
| Finances out of view | Unlisted, with revenue, profit or loss, funds raised and headcount all undisclosed. Whether its funding is sustainable cannot be assessed from outside | Not yet confirmed |
| Starting up the GW-scale line | Construction began in February 2025, and as of August 2026 the line was still described as "construction has started". No start date has been given | Sourced |
| Distance between headline technology and product | The headline records are in all-perovskite tandems, but production is single-junction. No date has been set for tandem production | Sourced |
| Misreading small-area records | The 30.1% cell is smaller than 0.05 cm². Production modules run at around 22%, on a par with mass-produced silicon | Sourced |
| Long-term reliability record | Published field data cover at most a few months to about two years, and outdoor durability over 25 years or more has not been demonstrated | Inference |
| Accuracy of the company website | The timeline on the company profile repeats content across years, and news posting dates differ from the dates of the events described | Sourced |
12. Glossary
- All-perovskite tandem
- A tandem that stacks two perovskites with different bandgaps. It uses no silicon.
- Single-junction
- A solar cell with a single perovskite light-absorbing layer. Renshine's production modules are of this type.
- Lead-tin perovskite
- A material in which part of the lead is replaced by tin to narrow the bandgap. Used as the lower layer of all-perovskite tandems. The tin oxidises easily.
- Four-terminal (4T)
- A structure in which the upper and lower cells are electrically independent, each with its own electrodes. The currents do not need to be matched.
- Surface passivation
- A treatment that neutralises defects at the surface of a film so that charge carriers are not needlessly lost.
- BIPV
- Building-integrated photovoltaics: roofing or facade materials that themselves generate electricity.
- JET
- Japan Electrical Safety & Environment Technology Laboratories, one of the bodies that measure and certify solar cell efficiency.
- Three Firsts, Two News
- A Jiangsu Province scheme recognising first-of-a-kind equipment, first batches of new materials and first versions of software, together with new technologies and new products.
13. References
- Renshine Solar (Suzhou) Co., Ltd. Company profile page, "Company introduction" (in Chinese). Founding at the end of 2021, more than 130 core patent applications, efficiency milestones, the Jiangsu Perovskite Industrial Technology Research Institute, the timeline and markets served. https://www.renshinesolar.com/about
- Renshine Solar News, "Renshine Solar's 150 MW perovskite PV module project completed and put into production" (in Chinese). Completion on 11 January 2024, groundbreaking in April 2023, the 1.2 m × 0.6 m format, the planned conversion to all-perovskite tandems, and remarks by a shareholder representative. https://www.renshinesolar.com/article/detail?id=28
- Renshine Solar News, "Renshine Solar's GW-scale perovskite PV cell project to be sited in Changshu" (in Chinese). Agreement signed 28 May 2024, total investment of more than CNY 1 billion and expected annual output value above CNY 2 billion, cooperation with Nanjing University-affiliated companies, and more than 60 patents. https://www.renshinesolar.com/article/detail?id=29
- Renshine Solar News, "Launch ceremony for construction of the headquarters and GW-scale perovskite production line" (in Chinese). 20 February 2025. https://www.renshinesolar.com/article/detail?id=41
- Renshine Solar News, "Commercial perovskite module receives authoritative certification from NREL in the US" (in Chinese). September 2024; 17.2% full-area efficiency on 0.72 m². https://www.renshinesolar.com/article/detail?id=37
- Renshine Solar News, "Awarded full TÜV Rheinland IEC 61215/61730 certification" (in Chinese). 30 December 2024. https://www.renshinesolar.com/article/detail?id=40
- Renshine Solar News, "1.2 MW perovskite distributed power plant completed and connected to the grid" (in Chinese). 29 September 2024; 9,300 modules averaging 130 W. https://www.renshinesolar.com/article/detail?id=38
- Renshine Solar News, "Two perovskite module world records broken in a row, with six authoritative international certifications" (in Chinese). Version 68 of the efficiency tables; 22.1%, 19.3%, 30.1%, 28.2%, 26.2% and 22.8%; inclusion in NLR's chart. https://www.renshinesolar.com/article/detail?id=69
- Renshine Solar News, "31.7%! Renshine Solar's tandem module efficiency hits another new high" (in Chinese). Four-terminal perovskite/silicon, 384.02 cm², TÜV SÜD. https://www.renshinesolar.com/article/detail?id=48
- Renshine Solar News, "26.4%! Renshine Solar sets another world record for large-area all-perovskite tandem modules" (in Chinese; September 2026). Aperture area 809 cm², TÜV SÜD, and earlier progress. https://www.renshinesolar.com/article/detail?id=90
- Renshine Solar News, "Taking on a major science and technology project to crack key technologies for space photovoltaics" (in Chinese). The 2025 Jiangsu Province major science and technology special project, flexible module efficiencies, and testing with Swansea University. https://www.renshinesolar.com/article/detail?id=54
- Renshine Solar News, "Perovskite cells co-developed by Renshine Solar undergo in-orbit testing outside the space station with Shenzhou-23" (in Chinese; August 2026). Joint research with Nanjing University and the Institute of Semiconductors, Chinese Academy of Sciences. https://www.renshinesolar.com/article/detail?id=24
- Renshine Solar News, "Invited to a provincial Department of Science and Technology symposium for emerging technology companies" (in Chinese; 26 August 2026). Steady shipments from the 150 MW line, start of construction of the GW-scale line, and the request for listing support. https://www.renshinesolar.com/article/detail?id=87
- Renshine Solar News, "The world's highest mass-production-efficiency perovskite module debuts at a European smart energy exhibition" (in Chinese; June 2026). Shuodian 2.0, above 22% full-area efficiency and 158.4 W, and its certifications. https://www.renshinesolar.com/article/detail?id=73
- Renshine Solar News, "In Nature again! From 17.2% to 22.0%" (in Chinese; August 2026). 22.0% full-area efficiency on 0.72 m², the solvent and surface passivation technologies, and field energy yield. https://www.renshinesolar.com/article/detail?id=83
- Renshine Solar News, "To the top in Nature! A large-area all-perovskite tandem module with 26.2% efficiency" (in Chinese; June 2026). 26.2% certified by JET, space applications, and the challenges of lead-tin perovskites. https://www.renshinesolar.com/article/detail?id=71
- Renshine Solar News, "Report card for East China's first utility-scale perovskite demonstration power plant" (in Chinese). Xuwei, Lianyungang; operating data from Jiangsu Fangyang New Energy; comparison with silicon references. https://www.renshinesolar.com/article/detail?id=76
- Renshine Solar News, "World's largest perovskite BIPV rooftop installation completed" (in Chinese; September 2026). A former factory in Shanghai; about 6,000 modules covering more than 4,000 m². https://www.renshinesolar.com/article/detail?id=66
- Renshine Solar News, "Perovskite tandem modules deployed at a green hydrogen plant" (in Chinese). Lijiang; perovskite/silicon tandems; 118.4 kWp. https://www.renshinesolar.com/article/detail?id=67
- Renshine Solar News, "Renshine Solar and China Architecture Design & Research Group join hands to build a new future for the BIPV industry" (in Chinese; 13 November 2025). https://www.renshinesolar.com/article/detail?id=47
- Renshine Solar News, "Renshine Solar signs a strategic cooperation agreement with Jinglian Optoelectronics" (in Chinese). 30 January (year not given); research on matching materials to devices, and coordination of production processes. https://www.renshinesolar.com/article/detail?id=55
- NLR (U.S. national laboratory, formerly NREL) Cell efficiency data table. The 30.1% all-perovskite tandem by "Nanjing Univ / Renshine" (JET, 0.04934 cm²). https://www.nlr.gov/docs/libraries/pv/cell-efficiency-data-table.xlsx
- NLR (U.S. national laboratory, formerly NREL) Champion Module Efficiencies chart. Perovskite two-junction at 22.8% (Renshine) and perovskite single-junction at 22.1% (Renshine/Nanjing U). https://www.nlr.gov/docs/libraries/pv/champion-module-chart.pdf
- Renshine Solar News, "Installation completed at Beijing's first perovskite agrivoltaic project" (in Chinese). Single-junction and silicon tandem modules supplied to a Beijing Energy Holding project in Zhangshanying Town, Yanqing. https://www.renshinesolar.com/article/detail?id=68
- Renshine Solar Official website (source of the company name style and the logo image). https://www.renshinesolar.com/
14. Claim-to-source audit
| Claim in the article | Category | Source |
|---|---|---|
| Legal entity name, founding at the end of 2021, more than 130 core patent applications, the research institute and its parent entity, markets served, and the repeated timeline entries | Sourced | Reference 1 https://www.renshinesolar.com/about |
| The 150 MW line (groundbreaking April 2023, completion 11 January 2024, 1.2 m × 0.6 m, domestically made equipment, future conversion to tandems) | Sourced | Reference 2 https://www.renshinesolar.com/article/detail?id=28 |
| The GW-scale line agreement (28 May 2024), total investment of more than CNY 1 billion, expected annual output value above CNY 2 billion, the 10 MW pilot line, and more than 60 patents | Sourced | Reference 3 https://www.renshinesolar.com/article/detail?id=29 |
| Start of construction of the headquarters and GW-scale line (20 February 2025) | Sourced | Reference 4 https://www.renshinesolar.com/article/detail?id=41 |
| 17.2% certified by NREL (full area of 0.72 m²) | Sourced | Reference 5 https://www.renshinesolar.com/article/detail?id=37 |
| Full IEC 61215/61730 certification (30 December 2024) | Sourced | Reference 6 https://www.renshinesolar.com/article/detail?id=40 |
| The 1.2 MW plant (9,300 modules, averaging 130 W) | Sourced | Reference 7 https://www.renshinesolar.com/article/detail?id=38 |
| Six entries in Version 68 of the efficiency tables (22.1%, 19.3%, 30.1%, 28.2%, 26.2% and 22.8%) | Sourced | Reference 8 https://www.renshinesolar.com/article/detail?id=69 |
| Four-terminal perovskite/silicon tandem module at 31.7% (384.02 cm², TÜV SÜD) | Sourced | Reference 9 https://www.renshinesolar.com/article/detail?id=48 |
| All-perovskite tandem module at 26.4% (809 cm², TÜV SÜD) | Sourced | Reference 10 https://www.renshinesolar.com/article/detail?id=90 |
| The Jiangsu Province major science and technology special project, flexible module efficiencies, and testing with Swansea University | Sourced | Reference 11 https://www.renshinesolar.com/article/detail?id=54 |
| The outside-the-cabin test on Shenzhou-23, and joint research with Nanjing University and the Institute of Semiconductors, CAS | Sourced | Reference 12 https://www.renshinesolar.com/article/detail?id=24 |
| Steady shipments from the 150 MW line, the start of construction of the GW-scale line, and the request for listing support (August 2026) | Sourced | Reference 13 https://www.renshinesolar.com/article/detail?id=87 |
| Shuodian 2.0 (above 22% full-area efficiency and 158.4 W, TÜV SÜD) and its certifications | Sourced | Reference 14 https://www.renshinesolar.com/article/detail?id=73 |
| 22.0% full-area efficiency on 0.72 m², and the solvent and surface passivation technologies | Sourced | Reference 15 https://www.renshinesolar.com/article/detail?id=83 |
| Large-area all-perovskite tandem at 26.2% (JET), the challenges of lead-tin perovskites, and space applications | Sourced | Reference 16 https://www.renshinesolar.com/article/detail?id=71 |
| Operating data from the Lianyungang demonstration plant (higher yield per unit than silicon references, 15% higher on cloudy days) | Sourced | Reference 17 https://www.renshinesolar.com/article/detail?id=76 |
| The BIPV roof on a former factory in Shanghai (about 6,000 modules, more than 4,000 m²) | Sourced | Reference 18 https://www.renshinesolar.com/article/detail?id=66 |
| Supply of tandem modules to a green hydrogen plant in Lijiang (118.4 kWp) | Sourced | Reference 19 https://www.renshinesolar.com/article/detail?id=67 |
| Supply to Beijing Energy Holding's agrivoltaic project in Yanqing | Sourced | Reference 24 https://www.renshinesolar.com/article/detail?id=68 |
| Partnership with China Architecture Design & Research Group (13 November 2025) | Sourced | Reference 20 https://www.renshinesolar.com/article/detail?id=47 |
| Strategic partnership with Jinglian Optoelectronics (30 January, year not given) | Sourced | Reference 21 https://www.renshinesolar.com/article/detail?id=55 |
| 30.1% in NLR's cell efficiency data table (Nanjing Univ / Renshine, JET, 0.04934 cm²) | Sourced | Reference 22 https://www.nlr.gov/docs/libraries/pv/cell-efficiency-data-table.xlsx |
| 22.8% (Renshine) and 22.1% (Renshine/Nanjing U) in NLR's module chart | Sourced | Reference 23 https://www.nlr.gov/docs/libraries/pv/champion-module-chart.pdf |
| The three types of perovskite solar cell company | Our calculation | Our own classification. Companies shown are examples from those covered in this series |
| About 950,000 to 1.15 million modules a year from 150 MW, with the Shanghai project at 0.5 to 0.6% of that | Our calculation | Our own division of the figures in references 2, 7, 14 and 18 |
| Revenue, profit or loss, shipments, funds raised, investors, headcount, the GW-scale line's start date and actual investment, and product prices | Not yet confirmed | Not in references 1 to 25. Press figures are not used https://www.renshinesolar.com/article/detail?id=87 |
| The reading of a two-step plan (earn with single-junction, leap with tandems) and of running tandems on the same line | Inference | This article's interpretation of the conversion plan in reference 2 |
| The reading that the first markets are buildings and distributed generation | Inference | This article's interpretation of the spread of installations and partners in references 18, 20 and others |
| The reading that it is staking out space as a long-term, high-value market | Inference | This article's interpretation of references 11, 12 and 16 |
| The reading that it is aiming for a listing before long | Inference | This article's interpretation of reference 13 |
| The risk that outdoor durability over 25 years or more has not been demonstrated | Inference | This article's interpretation of the periods covered by the published operating data |
Last updated 25 September 2026 / Troy Technical
Every figure in this article comes from Renshine Solar's official website (company profile and news) and material published by NLR (formerly NREL). Because the company is unlisted and makes no statutory disclosures, company announcements and third-party efficiency tables are shown separately. No research-firm estimates or press-based figures have been used. Passages marked "Inference" are this article's interpretation of primary sources, not statements made by the company.