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This listing may be outdated.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 grantsSolid State and Materials Chemistry (SSMC) is sponsored by NSF Division of Materials Research. Encourages research on organic, inorganic, and hybrid materials, emphasizing synthesis and structure-property relationships.
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.
Solid State and Materials Chemistry | NSF - U.S. National Science Foundation Division of Materials Research: Topical Materials Research Programs (DMR-TMRP) Solid State and Materials Chemistry Important information for proposers and award recipients All proposals must be submitted in accordance with the requirements specified in the funding opportunity and in the Proposal & Award Policies & Procedures Guide (PAPPG) and its supplements .
All NSF grants and cooperative agreements are subject to the applicable set of NSF award terms and conditions . NSF has updated its research security policies for NSF funded projects. Supports research and education on organic, inorganic and hybrid materials, with an emphasis on materials synthesis and the relationships between material structure and properties.
Supports research and education on organic, inorganic and hybrid materials, with an emphasis on materials synthesis and the relationships between material structure and properties. All proposals submitted to this Program that are not governed by another solicitation (such as CAREER) must be submitted to the solicitation: Division of Materials Research: Topical Materials Research Programs (DMR:TMRP) (NSF 22-609) .
Proposals under this solicitation are accepted any time. Proposers should be aware that there is no change expected in the average time to decision and release of reviews. Considering that NSF’s fiscal year begins on October 1 st and ends on September 30 th , proposals submitted between February and August are more likely to be awarded in the following fiscal year.
The multidisciplinary Solid State and Materials Chemistry (SSMC) program portfolio comprises fundamental research on organic, inorganic, and hybrid materials with an emphasis on synthesis and structure-property relationship studies.
The SSMC program supports fundamental research focused on experimentally elucidating atomic and molecular underpinnings for materials development and properties of extended solid-state materials, spanning the entire range from nanoscale assemblies to the bulk.
The SSMC program particularly encourages research encompassing multicomponent materials systems, a strong mesoscale aspect, and/or interface-related phenomena with regard to materials properties.
The SSMC program encourages potentially transformative submissions at the frontiers of solid-state and materials chemistry research, which include but are not limited to: 1) Crystallization and crystal growth studies of organic and inorganic materials. 2) Synthesis of hybrid materials and fundamental investigations into their emergent properties.
3) Development of original materials design principles and approaches to innovative design, including proposals with a machine-learning aspect. 4) Studies correlating materials properties of framework materials, nanomaterial assemblies, or 2D materials to their structure and/or components. 5) Development and fundamental investigation of novel material systems for energy harvesting, conversion, and storage.
Research in this area will be considered only if the objective of the study is advancing insights into fundamental materials chemistry challenges through systematic investigations rather than improving performance. Submissions related to synthesis and characterization of next generation “beyond Li-ion” battery materials are encouraged.
6) The SSMC program also welcomes proposals on all materials aspects of sustainability under the Critical Aspects of Sustainability (CAS) program.
All fundamental research projects targeting eventual end applications beyond the scope of the project submitted to the SSMC program, should use application-related device design or performance testing only as a characterization tool to inform materials chemistry questions within the context of structure-property relationship studies, rather than to improve performance.
While the SSMC program acknowledges the importance of computational materials chemistry and sees merit in studies that combine experimental and computational aspects, proposals submitted to the SSMC program need to contain at least an experimental validation component, if experimental materials chemistry is not the major focus of the research project.
Proposals with a significant emphasis on catalysis-related research that are submitted to the SSMC program may be discussed with program directors for the catalysis program in the ENG-CBET or MPS-CHE division, respectively. Proposals may either be transferred or reviewed jointly depending on the extent of alignment with the goals of both programs.
PIs are strongly encouraged to contact the SSMC program to discuss the submission of proposals that potentially fall in this category. Submission deadlines for the intended secondary program need to be taken into consideration.
Proposals within the area of liquid crystal research that are submitted to the SSMC program will be discussed with the Condensed Matter Physics (CMP) program and possibly either co-reviewed or transferred depending on the extent of alignment with the goals of both programs. PIs are strongly encouraged to contact the SSMC program to discuss the submission of proposals that potentially fall in this category.
The SSMC program works closely with other programs within the Mathematical and Physical Sciences (MPS) and Engineering (ENG) directorates to accommodate the multidisciplinary nature of proposal submissions.
Additional program resources 2019 SSMC Workshop (Frontiers in hybrid and interfacial materials chemistry research) 2011 SSMC Workshop ("Materials by Design") NSF 2006 Solid State Chemistry Workshop Report Recently Funded SSMC Awards Research Experiences for Undergraduates (REU) Sites and Supplements Faculty Early Career Development Program (CAREER) Designing Materials to Revolutionize and Engineer our Future (DMREF) National Science Foundation Research Traineeship (NRT) Program Major Research Instrumentation (MRI) Program: Instrument Acquisition or Development Dear Colleague Letter: MPS AGEP-GRS Dear Colleague Letter: Critical Aspects of Sustainability (CAS): Micro- and Nanoplastics (MNP) Awards made through this program Browse projects funded by this program Map of recent awards made through this program Directorate for Mathematical and Physical Sciences (MPS) Division of Materials Research (MPS/DMR)
According to the current listing, eligibility includes: Universities, non-profit organizations, and other U. S. institutions. Confirm the full requirements in the official notice before applying.
Solid State and Materials Chemistry (SSMC) is funded by NSF Division of Materials Research. 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.
SSbD bio-based alternatives for fertilising and/or crop protection products is sponsored by European Commission — Horizon Europe. Expected Outcome: Successful proposals will contribute to the updated EU Bioeconomy Strategy, Farm to Fork Strategy, the Horizon Europe Mission ‘A Soil Deal for Europe’, in particular the objectives: ‘Reduce soil pollution and enhance restoration’, the European Chemical Industry Action Plan as well as the Clean Industrial Deal. Projects results are expected to contribute to the following expected outcomes: Full industrial scale biorefinery and related value chain(s) for the sustainable production of bio-based fertilisers and/or crop protection solutions. Increased availability of cost-competitive and SSbD bio-based alternatives for fertilising and/or crop protection products with suitable agronomic efficacy. Reduced reliance on synthetic/mineral agricultural chemical products. Increased EU strategic autonomy, resilience and competitiveness through a robust cooperation among bio-based industries and farmers. Increased soil health, including minimising accumulation of microplastics and pollutants in soil and water, with positive effects on quality, security and resilience of food production in agriculture. Scope: FAO estimates that up to 40% of food crops are lost due to plant pests and diseases globally every year. [1] Chemical synthetic products are conventionally used to protect crops and other plants from pests and diseases. In parallel, the EU is largely dependent on imports of both mineral and chemical fertilisers to grow crops. In both cases, over-use of synthetic/mineral products also poses concern for soil health and food quality. Moreover, the unequal distribution and depletion of non-renewable sources risks disrupting supply chains, particularly during energy crises. SSbD bio-based fertilising and crop protection products can offer more resilient and sustainable solutions creating an added-value partnership between agriculture and industry both upstream (for feedstock supply) and downstream (for the use of sustainable and efficient bio-based products). However, when scaling-up, challenges need to be solved in terms of process efficiency and robustness against feedstock variability, formulations stability and efficacy on the field (also in consideration of climate change effects and different soil conditions), and cost competitiveness. Proposals under this topic should: Demonstrate (at TRL 8) the efficient industrial production of SSbD bio-based solutions as alternatives to current fertilising and/or crop protection products. Bioactive molecules and/or biotechnology solutions for bio-fertilisers, bio-stimulants and/or pest/disease control (e.g., bioherbicides, biopesticides, bioinsecticides), or a combination thereof, are in scope. Products in scope can be applicable at any crop(s) cycle stage. Validate (at TRL 6 and above) at scale the produced bio-alternatives into the formulation of end-product(s) and test their agronomic efficiency, safety and sustainability to prove the achievement of similar or improved properties compared to defined benchmarks available in the market (synthetic and/or mineral). In case of bio-based fertilisers, put in place a solid production validation procedure to ensure reduced nutrient variability of the N/P/K content in end-products. Test the developed product(s) with primary producers on the field (demo farms) for selected crops and monitor their effects on soil health and quality, as well as on water. Cover different climatic and soil conditions, taking into account different farming systems, including organic agriculture. If controlled release mechanisms are employed, the proposed innovations should avoid microplastics accumulation in soil. In addition to the specific requirements applicable for the type of action, as described in section 2.2.3.1 of the CBE JU Annual Work Programme 2026 [2] , proposals under this topic should: As part of the multi-actor approach (MAA), ensure adequate involvement of all key actors in the value chains relevant for this topic and across the sustainable cir Programme areas: Global Challenges and European Industrial Competitiveness, Food, Bioeconomy Natural Resources, Agriculture and Environment, Bio-based Innovation Systems in the EU Bioeconomy, Horizon Europe (HORIZON) Keywords: Agricultural biotechnology, Agriculture related to crop production, soil biology and cultivation, applied plant biology, Agronomy, Fertilisation, agricultural biotechnology, bio-based crop protection solutions, bio-based fertilisers, bioactive molecules, biorefineries, farming systems, safe and sustainable by design, STEP-Biotech
Understanding and tackling the decline of insects is sponsored by European Commission — Horizon Europe. Expected Outcome: Project results are expected to contribute to all of the following expected outcomes: researchers better understand the status and population trends of insect species and the drivers of their decline; competent authorities in charge of biodiversity policies at all levels are capable of taking informed decisions, based on better understanding and valuation of socioeconomic benefits and ecological importance of insects, including for climate action; society and relevant land managers are better informed and equipped to tackle the drivers of the decline of insects. Scope: Insects play a vital role contributing to ecosystem functions in addition to pollination, such as decomposition and nutrient cycles, soil formation (including carbon sequestration) and pest control, control functions essential for maintaining ecosystem complexity, and are an indispensable part of the food chain. Those functions are key for climate change mitigation and allow the provision of ecosystem services which have economic benefits and support human well-being. Additionally, insects play a key role in other socioeconomic areas such as medical and pharmaceutical applications (e.g. antimicrobial peptides), forensic science or biotechnology. The dramatic decline of insects, estimated around 75% in the last three decades, is raising increasing concern among scientists and in the public, since it could have far-reaching implications. In order to be able to tackle this decline, there is a need to improve our understanding of the drivers of loss and how they interplay. A better knowledge of insects themselves is necessary. With targets 4 and 5 of the EU biodiversity strategy for 2030, the EU took, among others, the commitment that by 2030 habitats and species show no deterioration in conservation trend and status, at least 30% reach favourable conservation status or at least show a positive trend, and that the decline of pollinators is reversed. According to the EU Nature Restoration Regulation, Member States shall put in place appropriate and effective measures to improve pollinator diversity and reverse the decline of pollinators by 2030. This is reflected in target 4 of the Kunming-Montreal Global Biodiversity Framework. The European Climate Law requires Member States to adopt and implement national adaptation strategies and plans in which they should promote Nature-based Solutions and ecosystem-based adaptation. These policies and legislations have reached the implementation stage in the EU and worldwide. Successful proposals are expected to: improve understanding and identification of insects’ diversity, including through genomic approaches; focus on less known insect groups. In particular a solid knowledge has already been generated regarding pollination and pollinating insects through past and ongoing projects, therefore they are not expected to be subject to new research under this topic; assess the status and trends of insects and analyse multiple drivers affecting them, as well as the ecosystem services that insects provide, at different spatial scales. A comprehensive integrative taxonomy approach should be adopted, incorporating a multidisciplinary framework, including ecology and ecotoxicology, and integrating methods that address the diverse needs of insects across their entire lifecycle, ensuring the identification of essential habitat resources at each stage of development. To assess the status and trends of insects and the effectiveness of strategies, proposals should develop and test approaches for long-term monitoring schemes for insects, possibly building on existing national or EU biodiversity monitoring schemes and pilots developed by Biodiversa+; devise, test and promote effective strategies to mitigate the major drivers of insects’ decline. Analyse the ecosystem functions underpinned by insects and undertake qualitative and quantitative valuation of ecosystem services emanating from those functions; explore how to implem Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Food, Bioeconomy Natural Resources, Agriculture and Environment, Biodiversity and Natural Resources Keywords: Biodiversity conservation, Biodiversity, conservation biology, conservation genetics, Conservation biology, ecology, genetics, Environmental Conservation, Environmental protection, Environmental stressors, Environmental toxicology at the population and ecosystems level, Habitat Systems, Habitat and species restoration and rehabilitation, Natural resources and environmental economics, Nature conservation, Protection of environment (before, during and after), Species interactions (e.g. food-webs, symbiosis, parasitism, mutualism, bio-invasion), Insects, biodiversity, climate change, conservation, decline, ecology, ecosystem, habitat, pollinator, species
NSF 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 26-519 puts $150 million and 300 chemistry awards on a rolling submission schedule, then caps each individual at two proposals per year counting PI, co-PI and senior/key personnel roles. Materials caps at one. Physics, math, astronomy, geosciences and biology cap at none. Here is the full quota map across all seven new core solicitations, why the senior-personnel clause is the trap, and how to allocate a quota you did not know you had.
Read articleNSF announced ELEGANT on September 17, 2026, an Other Transaction Agreement Solutions Offering to translate low-dimensional semiconductor technologies into manufacturable platforms. Five translation themes, one Ecosystem Coordinator, and a rule that says you cannot bid for both. Here is how to read the structure before the deadline is published.
Read article