This Government Contract opportunity from Office Of The Director Of National Intelligence was posted on April 20, 2026. The submission period has ended. Browse the details below for market research, or find similar active opportunities.
Request for Information (RFI) on Biologically-Derived Materials for Transient Propulsion Systems
Contract Overview
Solicitation details, issuing organization, response deadlines, documents, and interested companies for this government contract opportunity.
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The Intelligence Advanced Research Projects Activity (IARPA) is seeking information on the current state of the art in biologically-derived materials that enable controlled transience in propulsion systems for unmanned aerial vehicles (UAVs). The focus is on materials capable of controlled degradation extending beyond structural components to include turbines, engines, motors, and related propulsion elements. IARPA is particularly interested in mechanisms for material transience that go beyond existing ultraviolet (UV) or water-initiated triggers, aiming for more diverse and environmentally stable activation methods. This inquiry arises from concerns over the environmental impact of persistent aerospace materials, especially as UAV operations grow in military, intelligence, and civilian domains. Although the DARPA ICARUS program demonstrated UV-triggered transient materials for UAV airframes, propulsion systems present greater challenges due to their exposure to extreme conditions, the mix of component materials, and the need for degradation triggers effective even in UV-shielded environments. Natural degradation processes like humidity, microbial activity, thermal cycling, and oxidation are considered potential pathways for these biologically-derived materials to enable controlled system degradation. This request for information (RFI) serves for planning purposes only and does not constitute a formal solicitation or intent to procure. Responses are to be submitted electronically as PDF documents by May 15, 2026, via the designated IARPA email address. Questions must be sent to the same contact without including proprietary information, and telephone inquiries are not permitted. The initiative is categorized under NAICS code 541715, with the point of performance based in Washington, D.C., and is managed through the Office of the Director of National Intelligence. The solicitation emphasizes the potential for innovative material solutions that can fulfill operational requirements while mitigating environmental residue from lost or unrecoverable UAV propulsion components.
General Info
Agency
NAICS
Place of Performance
Washington, DC, 20511, USASet-Aside
Timeline
Submission Closed
Organization & Contact Information
Full Description
The Intelligence Advanced Research Projects Activity (IARPA) seeks information regarding the current state of the art (SOTA) in biologically-derived materials suitable for controlled transience in propulsion systems for unmanned aerial vehicles (UAVs). IARPA is interested in understanding how controlled material degradation can be extended beyond structural components to include turbines, engines, motors, and associated propulsion elements. Of particular interest are approaches that move beyond ultraviolet (UV)-initiated or water (H2O)-initiated transience mechanisms and subsequently enable more diverse triggering modalities that are stable in a range of environmental conditions. This RFI is issued for planning purposes only and does not constitute a formal solicitation for proposals or suggest the procurement of any materials, components, or systems.
The proliferation of UAV operations across military, intelligence, and civilian domains has raised growing concerns about the environmental footprint of aerospace materials, particularly in scenarios where systems may be lost. Conventional propulsion components, and their controls, fabricated from persistent materials—metal alloys, engineering plastics, and advanced composites—can remain in ecosystems for decades or centuries. DARPA's ICARUS (Inbound, Controlled, Air-Releasable, Unrecoverable Systems) program pioneered a solution for airframe structures by demonstrating transient materials that maintain operational performance before undergoing controlled degradation, thereby minimizing persistent environmental residue. The ICARUS approach employed primarily UV-triggered photopolymers that undergo programmable degradation of structural components, establishing proof-of-concept. However, extending these achievements beyond airframes to propulsion systems and their controls reveals critical limitations: propulsion components operate under extreme thermal, mechanical, and chemical stresses; contain a mixture of material types; must maintain structural integrity throughout dynamic mission profiles; require materials compatible with combustion environments or electromagnetic fields; and face significant challenges when UV initiation serves as the primary degradation trigger within enclosed or shielded propulsion assemblies where UV exposure may be limited or absent. Moreover, there may be operational parameters where natural UV exposure is present. Environmental conditions that naturally degrade materials—humidity, microbial activity, thermal cycling, oxidation—are often more readily available than UV exposure, suggesting opportunities for bio-derived materials that leverage natural decomposition pathways to control degradation of an airborne system.
Responses to this RFI are due no later than 5:00 p.m. Eastern Time, May 15, 2026. All submissions must be electronically submitted as PDF documents to dni-iarpa-rfi-26-01@iarpa.gov. Inquiries must be submitted to the same address. Do not send questions with proprietary content. No telephone inquiries will be accepted.
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