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A Droplet Method for Synthesis of Multiclass Ultrathin Metal Halides Journal article
Tang,Jin, Ge,Feixiang, Chen,Jinlian, Zhou,Dawei, Zhan,Guixiang, Liu,Jing, Yuan,Jiaxiao, Shi,Xinyu, Zhao,Peiyi, Fan,Xinlin, Su,Yu, Liu,Zicong, He,Jiahao, Tang,Jiaqi, Zha,Chenyang, Zhang,Linghai, Song,Xuefen, Wang,Lin. A Droplet Method for Synthesis of Multiclass Ultrathin Metal Halides[J]. Small, 2023, 19(43).
Authors:  Tang,Jin;  Ge,Feixiang;  Chen,Jinlian;  Zhou,Dawei;  Zhan,Guixiang; et al.
Favorite | TC[WOS]:3 TC[Scopus]:3  IF:13.0/13.5 | Submit date:2023/08/03
2d Materials  Droplet Methods  Heterostructures  Liquid-phase Growth  Metal Halides  
Topological tailoring-induced Dirac cone in ultrathin niobium diboride nanosheets for electrocatalytic sulfur reduction reaction Journal article
Zhao, Yuwei, Zhang, Linghai, Xiang, Jianglu, Chen, Xinyu, Zhu, Chao, Wang, Kaixi, Li, Junfeng, Ma, Huifang, Song, Xuefen, Wang, Lin, Zha, Chenyang. Topological tailoring-induced Dirac cone in ultrathin niobium diboride nanosheets for electrocatalytic sulfur reduction reaction[J]. Materials Today Physics, 2023, 32, 101029.
Authors:  Zhao, Yuwei;  Zhang, Linghai;  Xiang, Jianglu;  Chen, Xinyu;  Zhu, Chao; et al.
Favorite | TC[WOS]:10 TC[Scopus]:9  IF:10.0/9.8 | Submit date:2023/04/03
Catalytic Reaction  D-band Center  Dirac Materials  Lithium Sulfur Battery  Weyl Fermions  
High electrochemical activity of Li2S2 linking two-dimensional tungsten boride nanosheet enables high-loading and long-lasting lithium-sulfur batteries Journal article
Zhao, Yuwei, Li, Jing, Xiang, Jianglu, Wu, Rong, Lyu, Chongguang, Ma, Huifang, Song, Xuefen, Zhang, Junran, Wang, Lin, Zha, Chenyang. High electrochemical activity of Li2S2 linking two-dimensional tungsten boride nanosheet enables high-loading and long-lasting lithium-sulfur batteries[J]. Materials Today Energy, 2022, 25, 100970.
Authors:  Zhao, Yuwei;  Li, Jing;  Xiang, Jianglu;  Wu, Rong;  Lyu, Chongguang; et al.
Favorite | TC[WOS]:19 TC[Scopus]:21  IF:9.0/8.4 | Submit date:2022/05/04
Activation Voltage  High Area Capacity  Li2s2  Long Cycling Performance  Wet Chemistry