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Scalable Processing of Large Area, Oriented 2-Dimensional Polymer Films

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OSW26TZ06-NV007SBIR / STTR

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Solicitation OSW26TZ06-NV007, issued by the Office of the Secretary of Defense, seeks a scalable and cost-effective method to produce large-area, oriented 2-dimensional polymer (2DP) ensemble films, such as covalent organic frameworks. The primary objective is to overcome current processing limitations that result in insoluble powders or mechanically weak films by developing a process amenable to roll-to-roll manufacturing. The goal is to achieve high structural order and orientation of individual sheets perpendicular to the film plane while minimizing defects like pinholes and stacking errors. The project is structured in three phases: Phase I requires a continuous process producing films 1-50 microns thick at a rate of 100 feet per minute; Phase II aims to increase deposition rates by 2-5 times; and Phase III focuses on scaling to manufacturing-relevant levels with highly aligned domains. This is a Total Small Business Set-Aside under the STTR program, requiring proposing firms to be registered in SAM and the SBA Company Registry. Proposals must be submitted via the Defense SBIR/STTR Innovation Portal by October 21, 2026. Evaluation is based on technical merit, innovation, personnel qualifications, and commercialization potential, with technical soundness being the most important factor. Awardees must comply with strict cybersecurity standards, including CMMC and NIST SP 800-171/172, and provide an intellectual property agreement between the small business and its research partner. All work is expected to be performed at the unclassified level and is subject to government inspection to ensure high professional standards.

General Info

OSD seeks scalable, roll-to-roll manufacturing for high-quality, oriented 2D polymer ensemble films.

Documents

2

DoW 2026 STTR Broad Agency Announcement (BAA)

PDF, High priority: read this firstrfp
High

OSW Basic Research 2026 STTR BAA Release 6

PDF, High priority: read this firstrfp
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Organization & Contact Information

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AgencyDepartment of Defense → Office of the Secretary of Defense
ContactsNo contacts available
OfficeUSA
Office AddressUSA
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Full Description

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2-dimensional polymers (2DPs) such as covalent organic frameworks (COFs) are an emerging class of materials which have displayed significant potential in applications ranging from catalysis, energy storage, dielectrics, nanofiltration, gas storage, and mechanically robust engineering materials. They are synthesized from geometrically pre-defined building blocks and can accommodate a wide variety of pore shapes, sizes, and functionality. Most methods used to produce 2DPs result in an insoluble microporous powder that cannot be processed into a functional form factor which limits their relevance in commercial or military applications. Despite these challenges, a variety of creative approaches have been explored to process 2DPs into films, composites, or gels. Top-down methods such as exfoliation or solution casting or bottom-up methods that form films directly from cast monomer solutions have been used to varying levels of success to access films and membranes. Interfacial polymerization has also been used to form films at the interface of two immiscible solvents. Despite this progress, many of the available techniques suffer from limitations that preclude further elaboration into industrially relevant processing techniques or lead to formation of films of poor quality. Exfoliation based approaches are low-yielding and solution casting techniques often involve appending solubilizing groups to the pore wall which can block access to the pore itself. Methods that cast directly from monomer solution can be scaled up in a roll-to-roll process but often result in films that are mechanically weak as it is difficult to control the size and orientation of the individual 2DP sheets and they often lack sufficient intermolecular interactions. More work is needed to understand the underlying kinetics and thermodynamics of the film forming processes as it relates to monomer selection, layer alignment, domain size, and formation of defects. New engineering approaches are also needed to further control film formation, thickness, functionality, and orientation during deposition and post-processing. Special focus should be given to controlling and minimizing defects that could mitigate material performance: point and stacking defects within 2D polymer crystals, stacking defects in between crystallites, pinholes, and residual solvent / reactant contaminations within the films, crystallite size distributions to name a few. The objective of this topic is to develop a scalable, cost-effective method to produce large area 2DP ensemble films with superb control over structural evolution. Designed processes must consider monomer composition, long range structural order in lateral and parallel planes, interlayer interactions and flaw tolerance. The process should be amenable to roll-to-roll processing or a related method to produce continuous films.

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