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Xiang Gao

center for high pressure science and technology advanced research

58H指数
300论文数
1.3W被引数
收录论文 189
发表时间
A Sustainable Brand-New Thermoelectric Cooling Material: High-Mobility Diamondoid Cu3SbSe4 Crystal一种可持续的新型热电制冷材料:高迁移率金刚烷基Cu3SbSe4晶体
err2026-09-23
err0
PREAI
errDezheng Gao; Shulin Bai; Yi Wen; Yichen Li; Yu Tian; Pengpeng Chen; Dongrui Liu; Yi Yue; Yuezhan Huang; Zhaokang Sun; Dingxuan Gong; Yixuan Hu; Tian Gao; Shibo Liu; Xiang Gao; In Chung; Hongyao Xie; Li-Dong Zhao
err分享
err收藏
Ultralow chromium doping enables all-PbSe thermoelectric cooling超低铬掺杂实现全PbSe热电制冷
errScience
IF45.8
err2026-06-04
err0
PREAI
errShibo Liu; Yu Tian; Yi Wen; Shulin Bai; Bingchao Qin; Haonan Shi; Lizhong Su; Xiaokun Feng; Rong Liu; Dezheng Gao; Yang Jin; Yixuan Hu; Tian Gao; Dongrui Liu; Yichen Li; Yumo Zhu; Shaowei Han; Linlong Xing; Sining Wang; Xiang Gao; Yongjin Chen; Yongxin Qin; Li-Dong Zhao
err分享
err收藏
Entropy-Stabilized Diamondoid AgCdInSe3 with Ultralow Thermal Conductivity and High Carrier Mobility for Thermoelectrics熵稳定型金刚烷基AgCdInSe3,具有超低热导率和高载流子迁移率,适用于热电器件
err2026-03-24
err0
PREAI
errYichen Li; Shulin Bai; Yi Wen; Yingcai Zhu; Zhongnan Guo; Wenjing Guo; Dezheng Gao; Pengpeng Chen; Yi Yue; Jingyi Su; Lizhong Su; Yixuan Hu; Siqi Wang; Lei Wang; Shan Liu; Shibo Liu; Tian Gao; Xiang Gao; Hongyao Xie; Li-Dong Zhao
err分享
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Advancing N-Type PbSe as Promising Candidates for Thermoelectric Cooling and Power Generation推进N型PbSe作为热电冷却和发电的有希望的候选者
err2026-02-17
err0
PREAI
errShaoping Zhan; Yi Wen; Yingcai Zhu; Siqi Wang; Jiayi Peng; Yang Jin; Shuo Zhao; Xiang Gao; Qing Tan; Li-Dong Zhao
err分享
err收藏
Extending the temperature range of the Cmcm phase of SnSe for high thermoelectric performance扩展SnSe的Cmcm相的温度范围以获得高热电性能
errSCIENCE
IF45.8
err2025-12-18
err1
PREAI
errGao, Tian; Wen, Yi; Bai, Shulin; Su, Lizhong; Shi, Haonan; Liu, Rong; Wang, Sining; Hu, Yixuan; Liu, Shibo; Liu, Dongrui; Liu, Shan; Liang, Chao; Feng, Xiaokun; Wang, Xiaoqian; Qin, Yongxin; Gao, Xiang; Qin, Bingchao; Chang, Cheng; Bai, Peikang; Zhao, Li-Dong
err分享
err收藏
Oxygen Vacancy Engineering Boosts the Rate Performance of Li/MnO2 Primary Batteries氧空位工程提高Li/MnO2一次电池的倍率性能
err2025-12-01
err0
PREAI
errYi, Dianxin; Tang, Ruihan; Zhang, Jiarui; Li, Chengyu; Ma, Jianjun; Jiang, Cairong; Gao, Xiang; Chao, Dongliang; Chen, Yongjin
err分享
err收藏