SCMs文章合辑|热电材料
本文精选了Science China Materials近期发表的热电材料领域的代表性成果,介绍给读者。敬请关注!
Remarkable electron and phonon transports in low-cost SnS: A new promising thermoelectric material
低成本SnS中卓越的电子和声子传输:一种具有前途的新型热电材料
Wenke He, Ran Ang, Li-Dong Zhao
Science China Materials, 65(5), 1143-1155 (2022)
https://doi.org/10.1007/s40843-021-1945-1
熵工程提高(GeTe)1-x(AgSb0.5Bi0.5Te2)x的热电性能和显微硬度
Jinxuan Zhong, Gege Liang, Jiahui Cheng, Weiqin Ao, Chaohua Zhang, Junqin Li, Fusheng Liu, Shengnan Zhang, Lipeng Hu
Science China Materials, 66(2), 696-706 (2023)
https://doi.org/10.1007/s40843-022-2211-8Ferroelectric engineering: Enhanced thermoelectric performance by local structural heterogeneity
铁电工程:铁电局部结构异质提高热电性能
Xiangyu Meng, Shuo Chen, Haoyang Peng, Hui Bai, Shujun Zhang, Xianli Su, Gangjian Tan, Gustaaf Van Tendeloo, Zhigang Sun, Qingjie Zhang, Xinfeng Tang, Jinsong Wu
Science China Materials, 65(6), 1615-1622 (2022)
https://doi.org/10.1007/s40843-021-1927-9
通过二维层状结构搭建能量和声子势垒提高InSb热电性能
Jiwu Xin, Wang Li, Sihui Li, Yang Tao, Tian Xu, Yubo Luo, Qinghui Jiang, Lei Wei, Junyou Yang
Science China Materials, 65(5), 1353-1361 (2022)
https://doi.org/10.1007/s40843-021-1921-3
Low carrier concentration leads to high in-plane thermoelectric performance in n-type SnS crystals
在低载流子浓度的n型层状SnS晶体中实现高的面内热电性能
Wenke He, Tao Hong, Dongyang Wang, Xiang Gao, Li-Dong Zhao
Science China Materials, 64(12), 3051-3058 (2021)
https://doi.org/10.1007/s40843-021-1684-0
Magneto-enhanced electro-thermal conversion performance
磁增强电热转换性能
Shifang Ma, Cuncheng Li, Wenjun Cui, Xiahan Sang, Ping Wei, Wanting Zhu, Xiaolei Nie, Fu-Hua Sun, Wenyu Zhao, Qingjie Zhang
Science China Materials, 64(11), 2835-2845 (2021)
https://doi.org/10.1007/s40843-021-1666-6
(Bi,Sb)2Te3/SiC纳米复合材料的热电性能增强:纳米SiC的尺寸和组分调控的影响
Bowen Cai, Jun Pei, Jinfeng Dong, Hua-Lu Zhuang, Jinyu Gu, Qian Cao, Haihua Hu, Zihao Lin, Jing-Feng Li
Science China Materials, 64(10), 2551-2562 (2021)
https://doi.org/10.1007/s40843-021-1647-0
Point defect approach to enhance the thermoelectric performance of Zintl-phase BaAgSb
利用点缺陷策略提高Zintl相BaAgSb的热电性能
Yifang Huang, Chen Chen, Weiming Zhang, Xiaofang Li, Wenhua Xue, Xinyu Wang, Yijie Liu, Honghao Yao, Zongwei Zhang, Yue Chen, Feng Cao, Xingjun Liu, Yumei Wang, Qian Zhang
Science China Materials, 64(10), 2541-2550 (2021)
https://doi.org/10.1007/s40843-020-1640-2
一种通用的块体热电材料高通量实验筛选策略
Shiyang He, Yang Yang, Zhili Li, Jiye Zhang, Chenyang Wang, Wenqing Zhang, Jun Luo
Science China Materials, 64(7), 1751-1760 (2021)
https://doi.org/10.1007/s40843-020-1568-5
晶界散射与镁成分调控协同提高硼掺杂Mg3Sb2基材料的热电性能
Xiaoxi Chen, Jianbo Zhu, Dandan Qin, Nuo Qu, Wenhua Xue, Yumei Wang, Qian Zhang, Wei Cai, Fengkai Guo, Jiehe Sui
Science China Materials, 64(7), 1761-1769 (2021)
https://doi.org/10.1007/s40843-020-1559-4
通过增强织构和诱导高密度线缺陷获得优异性能的Bi0.4Sb1.6Te3.72热电材料
Junhao Qiu, Yonggao Yan, Hongyao Xie, Tingting Luo, Fanjie Xia, Lei Yao, Min Zhang, Ting Zhu, Gangjian Tan, Xianli Su, Jinsong Wu, Ctirad Uher, Hongyi Jiang, Xinfeng Tang
64(6),1507-1520 (2021);
https://doi.org/10.1007/s40843-020-1548-x
Cu1.8S基合金的热电性能和电稳定性增强:熵工程和Cu空位工程
Wei Zhou, Hezhang Li, Zhihang Shan, Rui Zhang, Shikuo Lu, Jun Pei, Zhenhua Ge, Min Zhou, Yuanbing Wang, Boping Zhang
https://doi.org/10.1007/s40843-022-2306-4
拉曼光谱定义SbCrSe3单晶的振动模式对称性和声子非谐性
Hong Wu, Xiangnan Gong, Yi Peng, Long Zhang, Bin Zhang, Kunling Peng, Jie Liu, Guang Han, Aifeng Wang, Yisheng Chai, Mingquan He, Haoshuang Gu, Emmanuel Guilmeau, Guoyu Wang, Xu Lu, Xiaoyuan Zhou
Science China Materials, 64(11), 2824-2834 (2021)
https://doi.org/10.1007/s40843-021-1672-2
Realizing ultrahigh average figure of merit through manipulating layered phonon-electron decoupling
Zizhen Zhou, Xiaoyuan Zhou
Science China Materials, 65(7), 1987-1988 (2022)
https://doi.org/10.1007/s40843-022-2068-0
可拉伸和高取向有机/无机复合纳米纤维膜用于多方向应变传感器和光驱动热电器件
Liming Wang, Xinyang He, Yunna Hao, Maorong Zheng, Rongwu Wang, Jianyong Yu, Xiaohong Qin
Science China Materials, 66(2), 707-715 (2023)
https://doi.org/10.1007/s40843-022-2160-8
窄能隙吸光型共轭聚苯并二噻唑:大规模界面合成及其强太阳能光热蒸发和温差发电性能
Xi Zhao, Zhifeng He, Wentao Ou, Pengcheng Lin, Yingying Chen, Ying Chen
Science China Materials, 65(9), 2491-2501 (2022)
https://doi.org/10.1007/s40843-021-2002-1
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