Search Prime Grants

2607613

Cooperative Agreement

Overview

Grant Description
PCL-TEST BED: POLARIS: POLYMER LABORATORY FOR AI, ROBOTICS, INFORMATICS, AND STANDARDS -NSF PCL-TEST BED: POLARIS: THE POLYMER LABORATORY FOR AI, ROBOTICS, INFORMATICS, AND STANDARDS ? ENABLING NATIONWIDE ACCESS TO AUTOMATED, AI-GUIDED SOFT MATERIALS RESEARCH SOFT MATERIALS?INCLUDING PLASTICS, COATINGS, ADHESIVES, AND FLEXIBLE ELECTRONICS?ARE ESSENTIAL TO MODERN LIFE, FROM SMARTPHONES AND MEDICAL DEVICES TO SUSTAINABLE PACKAGING AND ELECTRIC VEHICLES. YET DISCOVERING NEW MATERIALS WITH IMPROVED PROPERTIES REMAINS SLOW, EXPENSIVE, AND LARGELY MANUAL. POLARIS WILL TRANSFORM THIS PROCESS BY INTEGRATING POWERFUL EXPERIMENTAL FACILITIES TO CREATE A REMOTELY ACCESSIBLE, ROBOT-OPERATED LABORATORY WHERE RESEARCHERS ACROSS THE US CAN DESIGN AND RUN EXPERIMENTS WITHOUT TRAVELING. USING ARTIFICIAL INTELLIGENCE TO GUIDE DISCOVERY, POLARIS WILL ACCELERATE THE DEVELOPMENT OF NEXT-GENERATION SOFT MATERIALS FOR CLEAN ENERGY SECURITY, ADVANCED MANUFACTURING, HEALTHCARE, AND NATIONAL DEFENSE. THE PROJECT WILL STRENGTHEN DOMESTIC SUPPLY CHAINS, REDUCE DEPENDENCE ON FOREIGN MATERIALS, AND HELP AMERICAN COMPANIES COMPETE GLOBALLY IN INDUSTRIES WORTH OVER $200 BILLION ANNUALLY. THROUGH TRAINING PROGRAMS AND PARTNERSHIPS WITH COLLEGES AND UNIVERSITIES NATIONWIDE, POLARIS WILL PREPARE A SKILLED WORKFORCE TO LEAD THE FUTURE OF AMERICAN MANUFACTURING AND SCIENTIFIC INNOVATION IN AN ERA INCREASINGLY SHAPED BY AUTOMATION AND ARTIFICIAL INTELLIGENCE.? POLARIS ESTABLISHES A PROGRAMMABLE CLOUD LABORATORY INTEGRATING MORE THAN TWENTY AUTOMATED SYNTHESIS, PROCESSING, AND CHARACTERIZATION PLATFORMS WITH AI-DRIVEN WORKFLOW ORCHESTRATION TO ENABLE CLOSED-LOOP MATERIALS DISCOVERY AT UNPRECEDENTED SCALE. THE NODE UNIFIES HIGH-THROUGHPUT POLYMER SYNTHESIS ROBOTS?INCLUDING THE ESTABLISHED POLYBOT PLATFORM?WITH FILM PROCESSING, DEVICE FABRICATION SYSTEMS, AND MULTIMODAL CHARACTERIZATION CAPABILITIES SPANNING THERMAL ANALYSIS, MECHANICAL TESTING, ELECTROCHEMICAL MEASUREMENTS, OPTICAL SPECTROSCOPY, AND X-RAY SCATTERING AT ARGONNE NATIONAL LABORATORY'S ADVANCED PHOTON SOURCE. THROUGH THE MODULAR AUTONOMOUS DISCOVERY FOR SCIENCE ORCHESTRATION FRAMEWORK AND GLOBUS DATA, COMPUTE, AND WORKFLOW INFRASTRUCTURE, RESEARCHERS SUBMIT EXPERIMENTAL CAMPAIGNS REMOTELY WHILE AI AGENTS TRANSLATE SCIENTIFIC GOALS INTO OPTIMIZED WORKFLOWS SPANNING SYNTHESIS, PROCESSING, AND CHARACTERIZATION. POLARIS EXECUTES 100?300 EXPERIMENTS DAILY WHILE MAINTAINING COMPREHENSIVE METADATA AND PROVENANCE TRACKING FOR REPRODUCIBILITY. TWO SCIENCE DRIVER PROGRAMS VALIDATE THESE CAPABILITIES WHILE ADVANCING FUNDAMENTAL UNDERSTANDING: (1) COLLOIDAL SUSPENSIONS AND COMPOSITES, EXPLORING DYNAMIC BONDING AND JAMMING BEHAVIOR ACROSS VAST FORMULATION SPACES RELEVANT TO COATINGS AND ENERGY-ABSORBING MATERIALS; AND (2) ELECTRONIC FUNCTIONAL POLYMERS, TARGETING HIGH-CAPACITANCE MIXED CONDUCTORS, ELECTROCHROMIC MATERIALS FOR SMART WINDOWS, AND ENVIRONMENTALLY STABLE SEMICONDUCTORS FOR BIOELECTRONICS. POLARIS OPERATES AS AN OPEN NATIONAL USER FACILITY PROVIDING EQUITABLE ACCESS TO ACADEMIC RESEARCHERS, INDUSTRY PARTNERS, AND INSTITUTIONS CURRENTLY LACKING ADVANCED LABORATORY INFRASTRUCTURE. ANNUAL WORKSHOPS, ONLINE TRAINING MODULES, AND STRUCTURED ONBOARDING PROGRAMS LOWER BARRIERS TO PARTICIPATION. ALL SOFTWARE, WORKFLOW TEMPLATES, DATA SCHEMAS, AND BENCHMARK DATASETS ARE RELEASED OPENLY UNDER FAIR (FINDABLE, ACCESSIBLE, INTEROPERABLE, REUSABLE) PRINCIPLES, ENABLING ADOPTION BY OTHER LABORATORIES AND ENSURING INTEROPERABILITY ACROSS THE EMERGING NATIONAL NETWORK OF PROGRAMMABLE CLOUD LABORATORIES.? THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.- SUBAWARDS ARE PLANNED FOR THIS AWARD.
Funding Goals
THE GOAL OF THIS FUNDING OPPORTUNITY, "TEST BED: TOWARD A NETWORK OF PROGRAMMABLE CLOUD LABORATORIES", IS IDENTIFIED IN THE LINK: HTTPS://WWW.NSF.GOV/PUBLICATIONS/PUB_SUMM.JSP?ODS_KEY=NSF25541
Awarding / Funding Agency
Place of Performance
Chicago, Illinois 60637-5418 United States
Geographic Scope
Single Zip Code
University Of Chicago was awarded AI-Guided Soft Materials Research: Nationwide Access Grant Cooperative Agreement 2607613 worth $5,000,000 from National Science Foundation in August 2026 with work to be completed primarily in Chicago Illinois United States. The grant has a duration of 4 years and was awarded through assistance program 47.084 NSF Technology, Innovation, and Partnerships. The Cooperative Agreement was awarded through grant opportunity Test Bed: Toward a Network of Programmable Cloud Laboratories.

Status
(Ongoing)

Last Modified 8/25/26

Period of Performance
8/1/26
Start Date
7/31/30
End Date
2.0% Complete

Funding Split
$5.0M
Federal Obligation
$0.0
Non-Federal Obligation
$5.0M
Total Obligated
100.0% Federal Funding
0.0% Non-Federal Funding

Activity Timeline

Interactive chart of timeline of amendments to 2607613

Additional Detail

Award ID FAIN
2607613
SAI Number
None
Award ID URI
SAI EXEMPT
Awardee Classifications
Private Institution Of Higher Education
Awarding Office
491502 INNOVATION AND TECHNOLOGY ECOSYSTEMS
Funding Office
491502 INNOVATION AND TECHNOLOGY ECOSYSTEMS
Awardee UEI
ZUE9HKT2CLC9
Awardee CAGE
5E688
Performance District
IL-01
Senators
Richard Durbin
Tammy Duckworth
Modified: 8/25/26