J
Jun Hu
Researcher at Tsinghua University
Publications - 307
Citations - 7665
Jun Hu is an academic researcher from Tsinghua University. The author has contributed to research in topics: Varistor & Dielectric. The author has an hindex of 36, co-authored 260 publications receiving 4730 citations. Previous affiliations of Jun Hu include Stanford University.
Papers
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Atomically engineering activation sites onto metallic 1T-MoS 2 catalysts for enhanced electrochemical hydrogen evolution.
Yi-Chao Huang,Yuanhui Sun,Xueli Zheng,Toshihiro Aoki,Brian Pattengale,Jier Huang,Xin He,Wei Bian,Sabrina Younan,Nicholas Williams,Jun Hu,Jingxuan Ge,Ning Pu,Xingxu Yan,Xiaoqing Pan,Lijun Zhang,Yongge Wei,Jing Gu +17 more
TL;DR: This research will expand on the ability to improve the activities of various catalysts by precisely engineering atomic activation sites to achieve significant electronic modulations and improve atomic utilization efficiencies.
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A Scalable, High-Throughput, and Environmentally Benign Approach to Polymer Dielectrics Exhibiting Significantly Improved Capacitive Performance at High Temperatures
TL;DR: The integration of excellent performance, versatility, high productivity, low cost, and environmental friendliness in the present method offers an unprecedented opportunity for the development of scalable high-temperature polymer dielectrics.
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Short-Term Load Forecasting With Deep Residual Networks
TL;DR: In this paper, a model for forecasting short-term electric load based on deep residual networks is presented, which is able to integrate domain knowledge and researchers' understanding of the task by virtue of different neural network building blocks.
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Polymer/molecular semiconductor all-organic composites for high-temperature dielectric energy storage.
Chao Yuan,Yao Zhou,Yujie Zhu,Jiajie Liang,Shaojie Wang,Simin Peng,Yushu Li,Sang Cheng,Mingcong Yang,Jun Hu,Bo Zhang,Rong Zeng,Jinliang He,Qi Li +13 more
TL;DR: It is shown that all-organic composites containing high-electron-affinity molecular semiconductors exhibit excellent capacitive performance at 200 °C, which is crucially important for their successful commercialization and practical application in high-temperature electronics and energy storage devices.
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Evaluation of polypropylene/polyolefin elastomer blends for potential recyclable HVDC cable insulation applications
TL;DR: In this paper, the microstructure and properties of polypropylene/polyolefin elastomer (PP/POE) blends for potential recyclable HVDC cable insulation applications were evaluated.