Project Grant 2208488
- This National Science Foundation (NSF) Engineering program (CFDA 47.041) Project Grant award, totaling $560,000, will support research at the University of California, Berkeley (UC Berkeley) to develop new methods for investigating nanoscale thermal transport phenomena. The research will combine ultrafast optical measurement techniques with nanoscale spatial resolution to probe energy carriers, such as electrons and phonons, in both equilibrium and non-equilibrium regimes. The goal is to...
- This Project Grant award, granted by the National Science Foundation (NSF) under the Technology, Innovation, and Partnerships (TIP) program (CFDA 47.084), provides $550,000 in funding to Carnegie Mellon University for the development of high-performance, nanostructured thermal pads to enhance heat dissipation in electronics. The key products or services to be delivered under this award include scalable and cost-effective manufacturing strategies to mass produce the nanostructured thermal pads,...
- This $300,000 Project Grant award from the National Science Foundation (NSF) Engineering program (CFDA 47.041) will support the development of a lock-in infrared thermography measurement tool to characterize thermal resistances in 3D integrated circuit (IC) die stacks. The objective is to advance the science and engineering of thermal property measurement to meet the needs of the microelectronics industry. The project will involve developing an analytical model for heat conduction in multi-layer...
- This $234,696 National Science Foundation Project Grant, funded through the Engineering program (CFDA 47.041), will support research into cross-plane heat conduction in two-dimensional materials under large compressive strain. Over a two-year period from June 2022 to May 2025, researchers at the University of Nevada, Reno will conduct experimental and computational studies of heat transfer across layers in three material systems - pristine MoS2, twisted MoS2, and graphite - under high...
- The National Science Foundation (NSF) awarded a 3-year, $352,829 Project Grant under the Mathematical and Physical Sciences (CFDA 47.049) program to the University of Texas at Dallas (UTD) to conduct collaborative research on manipulating the thermal properties of two-dimensional (2D) materials through interface structure and chemistry. The key research objectives are to: Understand and control thermal boundary conductance at 2D-2D and 2D-bulk material interfaces by applying extreme pressure...
- This Project Grant award of $631,792 from the National Science Foundation's (NSF) Mathematical and Physical Sciences program aims to develop material processes and devices that maximize the ferroelectric performance and endurance of trench capacitors for energy-efficient data storage. The key technical objectives are to: 1) Demonstrate non-planar, hafnia-based devices exhibiting greater than 10^15 switching endurance under back-end-of-line semiconductor processing conditions, and 2) Develop a...
- The National Science Foundation (NSF) Division of Chemical, Bioengineering, Environmental, and Transport Systems awarded a $402,945 Project Grant to Yale University from September 1, 2023 to August 31, 2026. The grant supports the development of an alternative, non-contact thermal metrology and imaging technique using organic semiconducting materials. The project aims to directly image heat flow at high spatial resolution down to the nanoscale, with applications in characterizing thermal...
- The National Science Foundation (NSF) Engineering program (CFDA 47.041) has awarded a $260,719 Project Grant to the Trustees of the Stevens Institute of Technology in Hoboken, New Jersey. The 3-year grant, which begins on June 1, 2024, supports collaborative research to develop a new class of efficient, fast, and robust thermal diodes. The project will study how tailoring condensation/evaporation heat transport mechanisms through heterogeneous nanostructures can enable precise control of thermal...
- This three-year, $354,328 National Science Foundation project grant will fund research to develop predictive simulations of grain boundary network evolution in metals and ceramics. The Carnegie Mellon University research team will work to uncover mechanisms of grain boundary migration through iterative experimentation and simulation. X-ray microscopy will be used to measure grain boundary structure changes over time in ferritic iron, nickel, and strontium titanate samples during in situ...
- This Project Grant award, valued at $300,000, was provided by the National Science Foundation (NSF) under the Integrative Activities program (CFDA 47.083). The award will fund a fellowship for an assistant professor and graduate student training at Brown University, in collaboration with researchers at Argonne National Laboratory. The project aims to explore the physical, electronic, and chemical properties of copper-carbon nanomaterials for enhanced thermal energy management in clean energy...
This three-year Project Grant from the National Science Foundation's Division of Materials Research, totaling $951,218, will fund research at Carnegie Mellon University to develop new techniques for measuring temperature distribution in nanoscale electronic devices under an applied voltage. The university researchers will use scanning thermal microscopy and scanning Joule expansion microscopy to map temperature changes in resistive switching structures and identify the operating mechanisms that control formation and motion of conductive filaments. Results are expected to provide fundamental insights into resistive memory technologies with applications for non-volatile high-density data storage. The work advances the National Science Foundation's Mathematical and Physical Sciences program and its goals to strengthen the nation's scientific enterprise through increased understanding of major problems in these fields.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $475.6k | 6/6/22 |