Maximizing Thermoelectric Figures of Merit by Uniaxially Straining Indium Selenide
Published in Journal of Physical Chemistry C, 2019
First-author study (byline: “Leonard W. Sprague, Jr.”) on uniaxial strain engineering of indium selenide to maximize thermoelectric figures of merit.
Recommended citation: Sprague, L. W., Jr., Huang, C., Song, J.-P., & Rubenstein, B. M. (2019). "Maximizing Thermoelectric Figures of Merit by Uniaxially Straining Indium Selenide." Journal of Physical Chemistry C, 123(41), 25437–25447.
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Learning thrives on engagement. Engagement manifests from value recognition. Value is found and evolves through dialogue. In the face of an upswelling AI presence that threatens to bypass genuine engagement, we must reimagine how we connect by crafting dialogues that acknowledge both the possibilities and pitfalls of AI within our learning environments. Len is a chemist-turned-consultant working at the intersection of AI and higher education.
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