P
Patrick J. Shamberger
Researcher at Texas A&M University
Publications - 95
Citations - 1959
Patrick J. Shamberger is an academic researcher from Texas A&M University. The author has contributed to research in topics: Thermal energy storage & Phase-change material. The author has an hindex of 18, co-authored 76 publications receiving 1508 citations. Previous affiliations of Patrick J. Shamberger include University of Hawaii & University of Washington.
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Hysteresis of the martensitic phase transition in magnetocaloric-effect Ni-Mn-Sn alloys
TL;DR: In this paper, the authors investigated the hysteresis of the temperature and magnetic field-induced martensitic phase transition in a cubic Heusler phase using magnetization as a proxy for the fraction of phases present.
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Continuous Ultra-Thin MoS2 Films Grown by Low-Temperature Physical Vapor Deposition
Christopher Muratore,Christopher Muratore,Jianjun Hu,Jianjun Hu,Baoming Wang,M. A. Haque,John E. Bultman,John E. Bultman,Michael L. Jespersen,Michael L. Jespersen,Patrick J. Shamberger,Michael E. McConney,Rachel D. Naguy,Andrey A. Voevodin +13 more
TL;DR: In this paper, a vapor phase growth technique for precisely controlled synthesis of continuous, uniform molecular layers of MoS2 on silicon dioxide and highly oriented pyrolitic graphite substrates of over several square centimeters at 350°C was described.
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Coherent Carbon Cryogel−Ammonia Borane Nanocomposites for H2 Storage
Aaron M. Feaver,Saghar Sepehri,Patrick J. Shamberger,Ashley C. Stowe,Tom Autrey,Guozhong Cao +5 more
TL;DR: Findings include a merged two-step hydrogen release reaction with an appreciable reduction in the dehydrogenation temperature to <90 degrees C as well as the suppression of borazine release.
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Self-Assembly, Molecular Packing, and Electron Transport in n-Type Polymer Semiconductor Nanobelts
Alejandro L. Briseno,Stefan C. B. Mannsfeld,Patrick J. Shamberger,Fumio S. Ohuchi,Zhenan Bao,Samson A. Jenekhe,Younan Xia +6 more
TL;DR: In this article, the authors showed that poly(benzobisimidazobenzophenanthroline) (BBL) nanobelts can be prepared by a simple high-yield, solution-phase process.
Continuous Ultra-Thin MOS2 Films Grown by Low-Temperature Physical Vapor Deposition (Postprint)
Andrey A. Voevodin,Patrick J. Shamberger,Michael E. McConney,Rachel D. Naguy,Chris Muratore,Jianjun Hu,Baoming Wang,M. A. Haque,John E. Bultman,Michael L. Jespersen +9 more
TL;DR: In this paper, a vapor phase growth technique for precisely controlled synthesis of continuous, uniform molecular layers of MoS2 on silicon dioxide and highly oriented pyrolitic graphite substrates of over several square centimeters at 350 deg C.