Open
Interfacial Engineering
Federal funding opportunity PD-23-1417 from National Science Foundation.
- Posted
- April 5, 2023
- Closes
- See announcement
- Program funding
- $3,200,000
- Expected awards
- 113
- Cost sharing
- No
- Instrument
- Grant
- Assistance listing
- 47.041
Program funding history
Awards made under Assistance Listing 47.041 across FY2024–FY2026, from public federal spending records.
- FY2024 obligated
- $757M
- FY2025 obligated
- $744.2M
- FY2026 (to date) obligated
- $151.7M
- Awards in window
- 6,130
Top recipients: Regents of the University of Michigan, Purdue University, Georgia Tech Research Corp, Trustees of the University of Pennsylvania, the, Ohio State University, the
Source: USAspending.gov · refreshed July 2026
Synopsis
The Interfacial Engineering program is part of the Chemical Process Systems cluster, which also includes: 1) the Catalysis program; 2) the Electrochemical Systems program; and 3) the Process Systems, Reaction Engineering, and Molecular Thermodynamics program.
The goal of the Interfacial Engineering program is to support fundamental research on atomic- and molecular-scale interfacial phenomena and engineering of interfacial properties, processes, and materials. Fundamental understanding of the thermodynamic, kinetic, and transport properties of interfacial systems underpins improvements in chemical process efficiency and resource utilization. As such, proposed research should have a clear vision for how the results will translate to practice in or otherwise advance industrial chemical or biochemical processes. The program encourages proposals that present new approaches to long-standing challenges or address emerging research areas and technologies. Collaborative and interdisciplinary proposals are also encouraged, particularly those that involve a combination of experiment with theory or modeling.
Major research areas of interest in the program include:
- Chemical separations: Design of scalable mass separating agents (for example, sorbents and membranes); field-induced separation processes that target a significant reduction in energy and/or materials requirements
- Biological separations: Downstream processing of biologically-derived chemicals, therapeutic proteins, and biologics for increased throughput and purity; engineering interfaces for molecular recognition
- Interfacial phenomena at engineered interfaces and surfaces: Kinetics and thermodynamics of adsorption/desorption and complex interactions of molecules and ions at engineered interfaces and surfaces within chemical process systems
- Nanoconfinement and engineered surfaces: Theory, modeling, and/or approaches for examining transport and thermodynamic properties of fluids within nanopores, under nanoconfinement, or at highly engineered surfaces within chemical process systems
Who can apply
- Unrestricted (i.e., open to any type of entity above), subject to any clarification in text field entitled "Additional Information on Eligibility"
How to apply
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