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2025

Journal Article

Copper ion diffusion by solid solution treatment advancing GeTe-based thermoelectrics

Chen, Yongqi, Li, Meng, Wang, Xiaodong, Chen, Wenyi, Liu, Siqi, Zhang, Min, Lyu, Wanyu, Li, Nanhai, Gao, Han, Liu, Weidi, Shi, Xiao-Lei and Chen, Zhi-Gang (2025). Copper ion diffusion by solid solution treatment advancing GeTe-based thermoelectrics. Nature Communications, 16 (1) 6796, 1-10. doi: 10.1038/s41467-025-62078-1

Copper ion diffusion by solid solution treatment advancing GeTe-based thermoelectrics

2025

Journal Article

Defective non-homogeneous bismuth-based photocatalysts with (Bi0S/Bi0I)-VBi-VO charge transfer channels for efficient water disinfection

Guo, Lihui, Wu, Yuanting, Tian, Weizhi, Wang, Xiaoying, Hu, Jingyue, Zhang, Xinmeng, Hai, Ou, Liu, Hulin, Xue, Yunlong, Tan, Guoqiang, Sh, Xiao-Lei and Chen, Zhi-Gang (2025). Defective non-homogeneous bismuth-based photocatalysts with (Bi0S/Bi0I)-VBi-VO charge transfer channels for efficient water disinfection. Journal of Colloid and Interface Science, 690 137272. doi: 10.1016/j.jcis.2025.137272

Defective non-homogeneous bismuth-based photocatalysts with (Bi0S/Bi0I)-VBi-VO charge transfer channels for efficient water disinfection

2025

Journal Article

Solvothermal S doping for the optimizing of thermoelectric performance in Ag2Se

Wang, Lijun, Miao, Pengcheng, Shi, Xiao-Lei, Li, Lvzhou, Shen, Ziyi, Huang, Li, Chen, Zhi-Gang, Ding, Jianning and Yuan, Ningyi (2025). Solvothermal S doping for the optimizing of thermoelectric performance in Ag2Se. Journal of Alloys and Compounds, 1035 181456, 181456-1035. doi: 10.1016/j.jallcom.2025.181456

Solvothermal S doping for the optimizing of thermoelectric performance in Ag2Se

2025

Journal Article

Influence of biaxial strain effects on thermal transport and thermoelectric performance of Janus transition metal dichalcogenide monolayers 双轴应变对单层 Janus 过渡金属硫族化合物热输运和热电性能的影响

Zhang, Min, Tang, Guihua, Shi, Xiaolei, Li, Yifei, Zhao, Xin, Huang, Dian and Chen, Zhigang (2025). Influence of biaxial strain effects on thermal transport and thermoelectric performance of Janus transition metal dichalcogenide monolayers 双轴应变对单层 Janus 过渡金属硫族化合物热输运和热电性能的影响. Wuli Xuebao/Acta Physica Sinica, 74 (13) 137202, 137202. doi: 10.7498/aps.74.20250295

Influence of biaxial strain effects on thermal transport and thermoelectric performance of Janus transition metal dichalcogenide monolayers 双轴应变对单层 Janus 过渡金属硫族化合物热输运和热电性能的影响

2025

Journal Article

Highly off‐centering cations in pavonite‐structured Ag1.75InSb5.75Se11 with competitive thermoelectric performance

Xie, Chenghao, Li, Rongcheng, Xu, Weibin, Jin, Bowen, Shi, Xiao‐Lei, Tang, Xinfeng, Tan, Gangjian and Chen, Zhi‐Gang (2025). Highly off‐centering cations in pavonite‐structured Ag1.75InSb5.75Se11 with competitive thermoelectric performance. Advanced Functional Materials, 35 (27) 2421545, 1-9. doi: 10.1002/adfm.202421545

Highly off‐centering cations in pavonite‐structured Ag1.75InSb5.75Se11 with competitive thermoelectric performance

2025

Journal Article

Glucose-assisted core-shell C-MoO2@C-MoS2 microspheres for boosting lithium-ion diffusion kinetics

Mo, Hesu, Lin, Yan, Qian, Junchao, Xing, Kai, Ma, Ruguang, Chen, Zhigang and Wu, Zhengying (2025). Glucose-assisted core-shell C-MoO2@C-MoS2 microspheres for boosting lithium-ion diffusion kinetics. Materials Today Chemistry, 46 102737, 102737. doi: 10.1016/j.mtchem.2025.102737

Glucose-assisted core-shell C-MoO2@C-MoS2 microspheres for boosting lithium-ion diffusion kinetics

2025

Journal Article

Defect Engineering in van der Waals Layer‐Structured Bi<sub>2</sub>Te<sub>3</sub>‐Based Materials

Liu, Si‐Qi, Liu, Wei‐Di, Lyu, Wanyu, Gao, Han, Golberg, Dmitri V. and Chen, Zhi‐Gang (2025). Defect Engineering in van der Waals Layer‐Structured Bi2Te3‐Based Materials. cMat, 2 (2) e70009. doi: 10.1002/cmt2.70009

Defect Engineering in van der Waals Layer‐Structured Bi<sub>2</sub>Te<sub>3</sub>‐Based Materials

2025

Journal Article

High-performance Ag2Se-based thermoelectrics for wearable electronics

Zhang, Lin, Shi, Xiao-Lei, Shang, Hongjing, Gu, Hongwei, Chen, Wenyi, Li, Meng, Huang, Daxing, Dong, Hao, Wang, Xiaolei, Ding, Fazhu and Chen, Zhi-Gang (2025). High-performance Ag2Se-based thermoelectrics for wearable electronics. Nature Communications, 16 (1) 5002, 1-11. doi: 10.1038/s41467-025-60284-5

High-performance Ag2Se-based thermoelectrics for wearable electronics

2025

Journal Article

Realizing high performance in flexible Mg3Sb2−xBix thin‐film thermoelectrics

Hu, Boxuan, Shi, Xiao‐Lei, Cao, Tianyi, Zhang, Min, Chen, Wenyi, Liu, Siqi, Li, Meng, Liu, Weidi and Chen, Zhi‐Gang (2025). Realizing high performance in flexible Mg3Sb2−xBix thin‐film thermoelectrics. Advanced Science, 12 (19) 2502683, 1-10. doi: 10.1002/advs.202502683

Realizing high performance in flexible Mg3Sb2−xBix thin‐film thermoelectrics

2025

Journal Article

Revisiting cobalt dopability in GeTe system to design modulation-doped thermoelectrics

Hu, Ming-Hang, Li, Meng, Wang, De-Zhuang, Yin, Liang-Cao, Wu, Hao, Liu, Wei-Di, Shi, Xiao-Lei, Wang, Yifeng, Liu, Qingfeng and Chen, Zhi-Gang (2025). Revisiting cobalt dopability in GeTe system to design modulation-doped thermoelectrics. Advanced Functional Materials, 35 (20) 2421837, 1-10. doi: 10.1002/adfm.202421837

Revisiting cobalt dopability in GeTe system to design modulation-doped thermoelectrics

2025

Journal Article

Self-powered thermoelectric hydrogels accelerate wound healing

Qin, Yuandong, Jia, Shiyu, Shi, Xiao-Lei, Gao, Shaojingya, Zhao, Jiangqi, Ma, Huangshui, Wei, Yanxing, Huang, Qinlin, Yang, Lei, Chen, Zhi-Gang and Sun, Qiang (2025). Self-powered thermoelectric hydrogels accelerate wound healing. ACS Nano, 19 (16), 15924-15940. doi: 10.1021/acsnano.5c01742

Self-powered thermoelectric hydrogels accelerate wound healing

2025

Journal Article

Metavalent alloying and vacancy engineering enable state-of-the-art cubic GeSe thermoelectrics

Luo, Haoran, Shi, Xiao-Lei, Liu, Yongqiang, Li, Meng, Zhang, Min, Luo, Xiaohuan, Wang, Moran, Huang, Xiaopei, Hu, Lipeng and Chen, Zhi-Gang (2025). Metavalent alloying and vacancy engineering enable state-of-the-art cubic GeSe thermoelectrics. Nature Communications, 16 (1) 3136, 1-14. doi: 10.1038/s41467-025-58387-0

Metavalent alloying and vacancy engineering enable state-of-the-art cubic GeSe thermoelectrics

2025

Journal Article

Transient liquid induced hierarchical structure contributes to high thermoelectric performance in Ag2Se

Kitthonbancha, Peeranut, Liu, Wei‐Di, Li, Meng, Pinitsoontorn, Supree and Chen, Zhi‐Gang (2025). Transient liquid induced hierarchical structure contributes to high thermoelectric performance in Ag2Se. Small, 21 (11) 2411798, 1-9. doi: 10.1002/smll.202411798

Transient liquid induced hierarchical structure contributes to high thermoelectric performance in Ag2Se

2025

Journal Article

N3C-defect-tuned g-C3N4 photocatalysts: structural optimization and enhanced tetracycline degradation performance

Lu, Yu, Liu, Chengbao, Zheng, Leizhi, Chen, Feng, Qian, Junchao, Meng, Xianrong, Chen, Zhigang, Zhong, Sheng and He, Bin (2025). N3C-defect-tuned g-C3N4 photocatalysts: structural optimization and enhanced tetracycline degradation performance. Nanomaterials, 15 (6) 466, 466. doi: 10.3390/nano15060466

N3C-defect-tuned g-C3N4 photocatalysts: structural optimization and enhanced tetracycline degradation performance

2025

Journal Article

Indium‐doping advances high‐performance flexible Ag2Se thin films

Cao, Tianyi, Shi, Xiao‐Lei, Hu, Boxuan, Liu, Siqi, Lyu, Wanyu, Li, Meng, Wang, Sen, Chen, Wenyi, Liu, Wei‐Di, Moshwan, Raza, Tesfamichael, Tuquabo, MacLeod, Jennifer and Chen, Zhi‐Gang (2025). Indium‐doping advances high‐performance flexible Ag2Se thin films. Advanced Science, 12 (18) 2500364, 1-11. doi: 10.1002/advs.202500364

Indium‐doping advances high‐performance flexible Ag2Se thin films

2025

Journal Article

Three-dimensional flexible thermoelectric fabrics for smart wearables

He, Xinyang, Shi, Xiao-Lei, Wu, Xiaoyun, Li, Chengzu, Liu, Wen-Di, Zhang, Honghua, Yu, Xuliang, Wang, Liming, Qin, Xiaohong and Chen, Zhi-Gang (2025). Three-dimensional flexible thermoelectric fabrics for smart wearables. Nature Communications, 16 (1) 2523, 1-11. doi: 10.1038/s41467-025-57889-1

Three-dimensional flexible thermoelectric fabrics for smart wearables

2025

Journal Article

Advances in flexible thermoelectric materials and devices fabricated by magnetron sputtering

Hu, Boxuan, Shi, Xiao-Lei, Cao, Tianyi, Li, Meng, Chen, Wenyi, Liu, Wei-Di, Lyu, Wanyu, Tesfamichael, Tuquabo and Chen, Zhi-Gang (2025). Advances in flexible thermoelectric materials and devices fabricated by magnetron sputtering. Small Science, 5 (3) 2300061, 1-21. doi: 10.1002/smsc.202300061

Advances in flexible thermoelectric materials and devices fabricated by magnetron sputtering

2025

Journal Article

Preparation of SnO2QDs-g-C3N4/C composites via biotemplate induction and determination for aflatoxin B1

Yu, Qiao Ling, Liu, Cheng Bao, Zheng, Lei Zhi, Qiu, Yong Bin, Meng, Xian Rong and Chen, Zhi Gang (2025). Preparation of SnO2QDs-g-C3N4/C composites via biotemplate induction and determination for aflatoxin B1. Journal of Alloys and Compounds, 1020 179398, 179398. doi: 10.1016/j.jallcom.2025.179398

Preparation of SnO2QDs-g-C3N4/C composites via biotemplate induction and determination for aflatoxin B1

2025

Journal Article

Reduced Na–S bond adsorption of WSSe enabling fast reaction kinetics in the sodium-ion battery

Liao, Ya-Ning, Yang, Yan-Ling, Shi, Xiao-Lei, Sun, Yu, He, Chao-Zheng, Qin, Yi, Zhang, Li, Chen, Yue-Feng and Chen, Zhi-Gang (2025). Reduced Na–S bond adsorption of WSSe enabling fast reaction kinetics in the sodium-ion battery. Journal of Energy Chemistry, 102, 609-617. doi: 10.1016/j.jechem.2024.10.060

Reduced Na–S bond adsorption of WSSe enabling fast reaction kinetics in the sodium-ion battery

2025

Journal Article

Bi-addition improves the thermoelectric performance of InSb

Chen, Yixing, Shi, Xiao-Lei, Li, Dou, Zhu, Jiaxi, Li, Meng, Zhang, Lei, Zhang, Zihan, Feng, Zhenyu, Ma, Xiao, Zhong, Hong, Li, Shuangming and Chen, Zhi-Gang (2025). Bi-addition improves the thermoelectric performance of InSb. Acta Materialia, 286 120736, 1-11. doi: 10.1016/j.actamat.2025.120736

Bi-addition improves the thermoelectric performance of InSb