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Jian Chen

Researcher at Zhejiang University

Publications -  886
Citations -  16205

Jian Chen is an academic researcher from Zhejiang University. The author has contributed to research in topics: Terahertz radiation & Medicine. The author has an hindex of 51, co-authored 741 publications receiving 10803 citations. Previous affiliations of Jian Chen include Shandong University & Energy Institute.

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First-Principles Study on the Adsorption and Dissociation of Impurities on Copper Current Collector in Electrolyte for Lithium-Ion Batteries.

TL;DR: The adsorption and dissociation of H2O, HF, and PF5 on the Cu(111) surface were studied using a first-principles method based on the density functional theory and showed that PF5 can promote the dissociation reaction of HF.
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Strain tuned dehydrogenation thermodynamics of magnesium based hydride: A first principle study

TL;DR: In this article, the authors show that the crystal structure and dehydrogenation thermodynamics of MgH2 are sensitive to the applied lattice strain, and that the metastable tetragonal and even orthorhombic Mg-H2 phase form upon strain.
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Fabry-Pérot cavity-coupled microbolometer terahertz detector with a continuously tunable air spacer gap.

TL;DR: Tunable Nb5N6 microbolometers operating in the terahertz frequency range are demonstrated and the detailed evolution of the resonance bands as a function of spacing is in excellent agreement with the analysis by using interference theory and simulation.
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Enhanced properties of mica-based composite phase change materials for thermal energy storage

TL;DR: In this paper, an emerging composite phase change materials were synthesized from KH-550decorated mica (Md) and polyethylene glycol (PEG) by vacuum impregnation method.
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Demonstration of a superconducting nanowire single photon detector with an ultrahigh polarization extinction ratio over 400.

TL;DR: A superconducting nanowire single photon detector (SNSPD) of which the response is ultra-sensitive to the polarization state of the incident photons, which is fully compatible with the multi-pixel SNSPD array platforms that emerged recently.