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CUNY and CCNY Secure $18.1M NSF Grant to Establish AI-Driven Bio-Inspired Materials Lab “AI-BIOME”

The City College of New York (National Science Foundation) USA
Overview
CUNY and CCNY have received an $18.1 million National Science Foundation (NSF) grant to establish “AI-BIOME,” an AI-enabled cloud-programmable national laboratory dedicated to accelerating the discovery, design, and manufacturing of advanced bio-inspired materials. This facility will conduct autonomous high-throughput chemical research with robots handling both liquids and solids, focusing on polymers, hydrogels, and composites. The integration of AI and robotics is expected to dramatically shorten material development cycles and foster innovation.
In Depth

Key Findings: CUNY and CCNY Establish AI-Driven ‘AI-BIOME’ Lab with $18.1M NSF Grant

The City University of New York (CUNY) and The City College of New York (CCNY) have announced the receipt of an $18.1 million grant from the National Science Foundation (NSF) to establish ‘AI-BIOME,’ an innovative national laboratory leveraging AI and robotics. The AI-BIOME (AI-Enabled Cloud-Programmable National Laboratory for Bio-Inspired Materials) aims to dramatically accelerate the discovery, design, and manufacturing of advanced bio-inspired materials, marking a critical step in shaping the future of materials science.

Technical & Clinical Details: Autonomous Robotic Experimentation and Cloud-Based Accessibility

At its core, AI-BIOME will feature high-performance robotic systems capable of handling both liquids and solids, enabling fully autonomous, high-throughput chemical research. Researchers will be able to program experiments remotely via the cloud, without needing to be physically present, and have robots execute them. This enhances experimental reproducibility and allows for rapid generation of large datasets without human intervention. AI will analyze the generated data in real-time, providing intelligent instructions to optimize subsequent experimental steps. Key research areas include bio-inspired materials such as polymers, hydrogels, and composites, with anticipated applications in medicine, energy, and environmental fields.

Background & Context: Accelerating Bio-Inspired Material Development and Democratizing Research

Bio-inspired materials, which mimic design principles found in nature, are gaining attention as new materials possessing superior functionality and sustainability previously unattainable with conventional materials. However, due to their complexity, the development process has traditionally faced challenges of time and cost. AI-BIOME integrates AI and robotics to dramatically shorten this development cycle, enabling faster discovery and optimization. Furthermore, its cloud-based accessibility will open advanced research infrastructure to researchers and educational institutions that previously had limited access, contributing to the democratization of scientific research and broadening the scope of innovation.

Strategic Significance & Outlook: Creation of Next-Generation Biomaterials and Broad Societal Impact

The AI-BIOME laboratory is expected to accelerate the creation of next-generation bio-inspired materials, offering innovative solutions in diverse fields such as medicine (e.g., biocompatible implants, drug delivery systems), sustainable energy (e.g., biofuel catalysts), and environmental remediation (e.g., pollutant adsorbents). The NSF grant provides a strong foundation for this cutting-edge research facility to generate significant outcomes over the next five years, strengthening U.S. leadership in materials science and engineering. In the future, this model has the potential to influence other research disciplines, fundamentally transforming the speed and scope of scientific discovery.

Source: https://www.ccny.cuny.edu/news/cuny-wins-181-million-nsf-award-build-ai-powered-materials-lab

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