Affiliation:
1. Laboratory of Atomic and Solid-State Physics, Cornell University, Ithaca, NY 14853
2. Kavli Institute at Cornell for Nanoscale Science, Cornell University, Ithaca, NY 14853
Abstract
We present in situ calorimetry, thermal conductivity, and thermal diffusivity measurements of materials using temperature-sensing optical wireless integrated circuits (OWiCs). These microscopic and untethered optical sensors eliminate input wires and reduce parasitic effects. Each OWiC has a mass of ∼100 ng, a 100-μm-scale footprint, and a thermal response time of microseconds. We demonstrate that they can measure the thermal properties of nearly any material, from aerogels to metals, on samples as small as 100 ng and over thermal diffusivities covering four orders of magnitude. They also function over a broad temperature range, and we present proof-of-concept measurements of the thermodynamic phase transitions in both liquid crystal 5CB and gadolinium.
Funder
National Science Foundation
DOD | USAF | AMC | Air Force Office of Scientific Research
Publisher
Proceedings of the National Academy of Sciences
Cited by
1 articles.
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