1,000+ Opportunities
Find the right grant
Search federal, foundation, and corporate grants with AI — or browse by agency, topic, and state.
This listing may be outdated. Verify details at the official source before applying.
Find similar grantsCenters for Chemical Innovation (CCI) is sponsored by NSF Directorate for Mathematical and Physical Sciences (MPS). Supports interdisciplinary research centers that pursue potentially transformative research across chemical sciences.
Get a weekly digest of new grants like this
A free weekly digest of new foundation and federal funding opportunities as they're added to Granted. Unsubscribe anytime.
Or search similar grants →Extracted from the official opportunity page/RFP to help you evaluate fit faster.
NSF Centers for Chemical Innovation - Directorate for Mathematical and Physical Sciences (MPS) | NSF - U.S. National Science Foundation NSF Centers for Chemical Innovation View image credit & caption The U.S. National Science Foundation Centers for Chemical Innovation focus on major, long-term challenges in fundamental chemistry.
Supported by the NSF Directorate for Mathematical and Physical Sciences, the centers conduct ambitious research with broad and valuable impacts for America. This work creates a strong scientific foundation for future technologies and the broad chemical industry, which is central to the U.S. economy and daily life.
Among the many breakthroughs achieved by the centers are the creation of an artificial intelligence-based system that autonomously designed and carried out complex chemistry experiments, and the development of new biological systems that make modified proteins with useful properties for drug development and biomaterials.
NSF currently supports six major, multi-institutional Centers for Chemical Innovation — known as Phase 2 centers — and several smaller Phase 1 incubator centers.
Guidelines for submitting a proposal to the program By partnering with industry, national laboratories and other organizations, the NSF Centers for Chemical Innovation respond rapidly to emerging research opportunities and national priorities, producing transformative research and ground-breaking innovations.
These collaborative centers also serve as a unique training ground for students and early-career researchers who will become the next generation of chemical scientists, engineers, educators and technicians. NSF Centers for Chemical Innovation (Phase 2) NSF Center for Genetically Encoded Materials (NSF C-GEM) Led by UC Berkeley, NSF C-GEM develops new biologically inspired methods to precisely build and tailor polymers.
The center aims to enable new applications based on understanding how to control molecules within polymers, such as information storage, textiles and fabrics, nanosensors and drug discovery and delivery.
NSF Center for Synthetic Organic Electrochemistry (NSF CSOE) Led by the Missouri University of Science and Technology, NSF CSOE aims to enable broader use of synthetic organic electrochemistry by inventing safe and economic new reactions. The center is merging synthetic organic chemistry and electrochemistry to develop safe and efficient chemical production methods.
NSF Center for the Chemistry of Molecularly Optimized Networks (NSF MONET) Led by Duke University, NSF MONET seeks to uncover the principles underlying the chemical structure and properties of polymer networks and materials based on them, like automobile tires, biomedical implants and structural materials. The center's work can lead to materials and products that last longer and reduce waste.
NSF Center for Computer Assisted Synthesis (NSF C-CAS) Led by the University of Notre Dame, NSF C-CAS is developing new machine learning methods to enable the discovery of novel reactions and yield new scientific insights. The work has broad potential impacts across synthetic chemistry and the applications it enables, such as medicine, materials science and energy research.
NSF Center for the Mechanical Control of Chemistry (NSF CMCC) Led by Texas A&M University, NSF CMCC is exploring how the mechanical application of force can enable new advances in chemistry. The center aims to make mechanical chemistry better understood and predictable, with potential applications that include making industrial processes cheaper and safer.
NSF Center for Single-Entity Nanochemistry and Nanocrystal Design (NSF CSENDD) Led by Indiana University, NSF CSENND investigates the structure and function of nanocrystals. The center is developing artificial intelligence-based technologies to rapidly screen nanocrystals in large numbers to identify their properties and potential applications in biomedicine, electronics, fuel production and other areas.
Learn more and get involved Visit the NSF Centers for Chemical Innovation website to explore the centers and find postdoctoral research fellowships and undergraduate training opportunities.
Tiny crystals, huge impact — NSF launches new nanocrystals research center The center will create AI-based technologies to rapidly identify nanocrystals with potentially useful properties for biomedicine, electronics, fuel production, chemical manufacturing and more.
Meet 'Coscientist,' your AI lab partner Researchers created an AI-based system that successfully planned and carried out real-world chemistry experiments, showing the potential to help scientists make more discoveries, faster.
'Crushing' chemical innovations at the heart of newly expanded NSF center Scientists study atomic-level workings inside the crushing and grinding of mechanical chemistry, with potential to use their discoveries for more sustainable and cost-effective chemical manufacturing.
According to the current listing, eligibility includes: Universities and colleges, non-profit non-academic organizations. Confirm the full requirements in the official notice before applying.
Centers for Chemical Innovation (CCI) is funded by NSF Directorate for Mathematical and Physical Sciences (MPS). Verify program details on the funder's official page before applying.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
MGPV Travel Grant is sponsored by Geological Society of America (GSA), Mineralogy, Geochemistry, Petrology, Volcanology Division. MGPV Travel grants support student travel to the annual GSA meeting. Applications are restricted to active graduate or undergraduate students who are the presenting authors of an accepted abstract at the annual GSA meeting.
Research Opportunities in Space and Earth Science (ROSES) - 2025: A.4 Rapid Response and Novel Research in Earth Science is sponsored by National Aeronautics and Space Administration (NASA) Science Mission Directorate (SMD). This omnibus research funding opportunity includes various program elements, with rolling submissions for Earth Science research through August 2026. Proposers to Earth Science using the NASA Center for Climate Simulation high-end computing facility must include specific budget details.
NSF announced three more X-Labs topics on September 16, 2026 — Artificial Intelligence for Physical Systems is live, with Sequence to Function and Computation at the Limit of Physics coming this fall. The Q&A webinar is October 14 and an RFI on future topics closes October 30. The per-topic key-personnel restriction is what should be driving your team-building decisions.
Read articleNSF 26-521 folds eight materials programs into one solicitation carrying $100 million and 200 to 300 awards. Proposals are accepted anytime — but no individual may appear as PI or co-PI on more than one proposal per fiscal year across all eight programs. That single sentence reshapes how materials labs collaborate.
Read articleNSF 26-523 folds 12 core physics programs and three cross-cutting ones into a single solicitation with $180 million and roughly 300 awards. Proposals are accepted anytime, but AMO-Experiment and Gravitational Physics still target November 25 and QIS targets December 8. Cost sharing is prohibited, indirect cost rates are now a tiebreaker, and NSF reserves the right to phase out long-duration efforts after comparative review.
Read article