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2022

Journal Article

Roles of anion sites in high‐performance GeTe thermoelectrics

Li, Meng, Xu, Sheng‐Duo, Hong, Min, Lyu, Wan‐Yu, Wang, Yuan, Dargusch, Matthew, Zou, Jin, Cheng, Hui‐Ming and Chen, Zhi‐Gang (2022). Roles of anion sites in high‐performance GeTe thermoelectrics. Advanced Functional Materials, 32 (48) 2208579, 1-8. doi: 10.1002/adfm.202208579

Roles of anion sites in high‐performance GeTe thermoelectrics

2022

Journal Article

Understanding micro and atomic structures of secondary phases in Cu‐doped SnTe

Kawami, Youichirou, Tran, Xuan Quy, Aso, Kohei, Yamamoto, Tomokazu, Wang, Yuan, Li, Meng, Yago, Anya, Matsumura, Syo, Nogita, Kazuhiro and Zou, Jin (2022). Understanding micro and atomic structures of secondary phases in Cu‐doped SnTe. Small, 18 (42) 2204225, 1-12. doi: 10.1002/smll.202204225

Understanding micro and atomic structures of secondary phases in Cu‐doped SnTe

2022

Journal Article

High strength and ductility of titanium matrix composites by nanoscale design in selective laser melting

Otte, Joseph A., Zou, Jin and Dargusch, Matthew S. (2022). High strength and ductility of titanium matrix composites by nanoscale design in selective laser melting. Journal of Materials Science & Technology, 118, 114-127. doi: 10.1016/j.jmst.2021.12.020

High strength and ductility of titanium matrix composites by nanoscale design in selective laser melting

2022

Journal Article

TiB reinforced lattice structures produced by laser powder bed fusion with high elastic admissible strain

Otte, Joseph A., Soro, Nicolas, Yang, Nan, Zou, Jin and Dargusch, Matthew S. (2022). TiB reinforced lattice structures produced by laser powder bed fusion with high elastic admissible strain. Materials Science and Engineering A, 845 143249, 1-15. doi: 10.1016/j.msea.2022.143249

TiB reinforced lattice structures produced by laser powder bed fusion with high elastic admissible strain

2022

Journal Article

Tuning 2D magnetism in Fe3+XGeTe2films by element doping

Liu, Shanshan, Li, Zihan, Yang, Ke, Zhang, Enze, Narayan, Awadhesh, Zhang, Xiaoqian, Zhu, Jiayi, Liu, Wenqing, Liao, Zhiming, Kudo, Masaki, Toriyama, Takaaki, Yang, Yunkun, Li, Qiang, Ai, Linfeng, Huang, Ce, Sun, Jiabao, Guo, Xiaojiao, Bao, Wenzhong, Deng, Qingsong, Chen, Yanhui, Yin, Lifeng, Shen, Jian, Han, Xiaodong, Matsumura, Syo, Zou, Jin, Xu, Yongbing, Xu, Xiaodong, Wu, Hua and Xiu, Faxian (2022). Tuning 2D magnetism in Fe3+XGeTe2films by element doping. National Science Review, 9 (6) nwab117, 1-8. doi: 10.1093/nsr/nwab117

Tuning 2D magnetism in Fe3+XGeTe2films by element doping

2022

Journal Article

Thermoelectrics for medical applications: Progress, Challenges, and Perspectives

Hu, Boxuan, Shi, Xiao-Lei, Zou, Jin and Chen, Zhi-Gang (2022). Thermoelectrics for medical applications: Progress, Challenges, and Perspectives. Chemical Engineering Journal, 437 (Part 2) 135268, 1-17. doi: 10.1016/j.cej.2022.135268

Thermoelectrics for medical applications: Progress, Challenges, and Perspectives

2022

Journal Article

A Solvothermal Synthetic Environmental Design for High‐Performance SnSe‐Based Thermoelectric Materials

Shi, Xiao‐Lei, Liu, Wei‐Di, Li, Meng, Sun, Qiang, Xu, Sheng‐Duo, Du, Du, Zou, Jin and Chen, Zhi‐Gang (2022). A Solvothermal Synthetic Environmental Design for High‐Performance SnSe‐Based Thermoelectric Materials. Advanced Energy Materials, 12 (20) 2200670, 1-10. doi: 10.1002/aenm.202200670

A Solvothermal Synthetic Environmental Design for High‐Performance SnSe‐Based Thermoelectric Materials

2022

Journal Article

Thermoelectric coolers: progress, challenges and opportunities

Chen, Wen‐Yi, Shi, Xiao‐Lei, Zou, Jin and Chen, Zhi‐Gang (2022). Thermoelectric coolers: progress, challenges and opportunities. Small Methods, 6 (2) 2101235, 2101235. doi: 10.1002/smtd.202101235

Thermoelectric coolers: progress, challenges and opportunities

2022

Journal Article

Continuous flow fabrication of green graphene oxide in aqueous hydrogen peroxide

Vimalanathan, Kasturi, Scott, James, Pan, Xun, Luo, Xuan, Rahpeima, Soraya, Sun, Qiang, Zou, Jin, Bansal, Nidhi, Prabawati, Elisabeth, Zhang, Wei, Darwish, Nadim, Andersson, Mats R., Li, Qin and Raston, Colin L. (2022). Continuous flow fabrication of green graphene oxide in aqueous hydrogen peroxide. Nanoscale Advances, 4 (15), 3121-3130. doi: 10.1039/d2na00310d

Continuous flow fabrication of green graphene oxide in aqueous hydrogen peroxide

2021

Journal Article

Achieving high‐performance Ge0.92 Bi0.08 Te thermoelectrics via LaB 6 ‐alloying‐induced band engineering and multi‐scale structure manipulation

Sun, Qiang, Shi, Xiao‐Lei, Hong, Min, Yin, Yu, Xu, Sheng‐Duo, Chen, Jie, Yang, Lei, Zou, Jin and Chen, Zhi‐Gang (2021). Achieving high‐performance Ge0.92 Bi0.08 Te thermoelectrics via LaB 6 ‐alloying‐induced band engineering and multi‐scale structure manipulation. Small, 18 (6) 2105923, 2105923. doi: 10.1002/smll.202105923

Achieving high‐performance Ge0.92 Bi0.08 Te thermoelectrics via LaB 6 ‐alloying‐induced band engineering and multi‐scale structure manipulation

2021

Journal Article

Two-dimensional flexible thermoelectric devices: Using modeling to deliver optimal capability

Xu, Shengduo, Hong, Min, Li, Meng, Sun, Qiang, Yin, Yu, Liu, Weidi, Shi, Xiaolei, Dargusch, Matthew, Zou, Jin and Chen, Zhi-Gang (2021). Two-dimensional flexible thermoelectric devices: Using modeling to deliver optimal capability. Applied Physics Reviews, 8 (4) 041404, 1-8. doi: 10.1063/5.0067930

Two-dimensional flexible thermoelectric devices: Using modeling to deliver optimal capability

2021

Journal Article

Advances in conducting polymer-based thermoelectric materials and devices

Cao, Tianyi, Shi, Xiao-Lei, Zou, Jin and Chen, Zhi-Gang (2021). Advances in conducting polymer-based thermoelectric materials and devices. Microstructures, 1 (1) 2021007. doi: 10.20517/microstructures.2021.06

Advances in conducting polymer-based thermoelectric materials and devices

2021

Journal Article

Optimizing electronic quality factor toward high‐performance Ge1−x−y Tax SbyTe thermoelectrics: the role of transition metal doping

Li, Meng, Sun, Qiang, Xu, Sheng‐Duo, Hong, Min, Lyu, Wan‐Yu, Liu, Ji‐Xing, Wang, Yuan, Dargusch, Matthew, Zou, Jin and Chen, Zhi‐Gang (2021). Optimizing electronic quality factor toward high‐performance Ge1−x−y Tax SbyTe thermoelectrics: the role of transition metal doping. Advanced Materials, 33 (40) 2102575, 1-8. doi: 10.1002/adma.202102575

Optimizing electronic quality factor toward high‐performance Ge1−x−y Tax SbyTe thermoelectrics: the role of transition metal doping

2021

Journal Article

Conducting polymer-based flexible thermoelectric materials and devices: from mechanisms to applications

Xu, Shengduo, Shi, Xiao-Lei, Dargusch, Matthew, Di, Chongan, Zou, Jin and Chen, Zhi-Gang (2021). Conducting polymer-based flexible thermoelectric materials and devices: from mechanisms to applications. Progress in Materials Science, 121 100840, 100840. doi: 10.1016/j.pmatsci.2021.100840

Conducting polymer-based flexible thermoelectric materials and devices: from mechanisms to applications

2021

Journal Article

Superstructured macroporous carbon rods composed of defective graphitic nanosheets for efficient oxygen reduction reaction

Wang, Jing, Yao, Yining, Zhang, Chaoqi, Sun, Qiang, Cheng, Dan, Huang, Xiaodan, Feng, Jiayou, Wan, Jingjing, Zou, Jin, Liu, Chao and Yu, Chengzhong (2021). Superstructured macroporous carbon rods composed of defective graphitic nanosheets for efficient oxygen reduction reaction. Advanced Science, 8 (18) 2100120, e2100120. doi: 10.1002/advs.202100120

Superstructured macroporous carbon rods composed of defective graphitic nanosheets for efficient oxygen reduction reaction

2021

Journal Article

High-efficiency thermocells driven by thermo-electrochemical processes

Li, Meng, Hong, Min, Dargusch, Matthew, Zou, Jin and Chen, Zhi-Gang (2021). High-efficiency thermocells driven by thermo-electrochemical processes. Trends in Chemistry, 3 (7), 561-574. doi: 10.1016/j.trechm.2020.11.001

High-efficiency thermocells driven by thermo-electrochemical processes

2021

Journal Article

Thickness-controlled three-dimensional Dirac semimetal for scalable high-performance terahertz optoelectronics

Yao, Xiaomei, Zhang, Shengxi, Sun, Qiang, Chen, Peizong, Zhang, Xutao, Zhang, Libo, Zhang, Jian, Wu, Yan, Zou, Jin, Chen, Pingping and Wang, Lin (2021). Thickness-controlled three-dimensional Dirac semimetal for scalable high-performance terahertz optoelectronics. ACS Photonics, 8 (6) acsphotonics.1c00127, 1689-1697. doi: 10.1021/acsphotonics.1c00127

Thickness-controlled three-dimensional Dirac semimetal for scalable high-performance terahertz optoelectronics

2021

Journal Article

A game-changing design of low-cost, large-size porous cocatalysts decorated by ultra-small photocatalysts for highly efficient hydrogen evolution

Li, Yuanli, Gao, Chunlang, Jiang, Wenshuai, Zhuang, Chunqiang, Tan, Wuyuan, Li, Weiming, Li, Yongli, Wang, Lihua, Liao, Xiaozhou, Sun, Zaicheng, Zou, Jin and Han, Xiaodong (2021). A game-changing design of low-cost, large-size porous cocatalysts decorated by ultra-small photocatalysts for highly efficient hydrogen evolution. Applied Catalysis B: Environmental, 286 119923, 119923. doi: 10.1016/j.apcatb.2021.119923

A game-changing design of low-cost, large-size porous cocatalysts decorated by ultra-small photocatalysts for highly efficient hydrogen evolution

2021

Journal Article

Structural evolution of high‐performance Mn‐alloyed thermoelectric materials: a case study of SnTe

Sun, Qiang, Chen, Zhi‐Yu, Li, Meng, Shi, Xiao‐Lei, Xu, Sheng‐Duo, Yin, Yu, Dargusch, Matthew, Zou, Jin, Ang, Ran and Chen, Zhi‐Gang (2021). Structural evolution of high‐performance Mn‐alloyed thermoelectric materials: a case study of SnTe. Small, 17 (25) 2100525, 1-10. doi: 10.1002/smll.202100525

Structural evolution of high‐performance Mn‐alloyed thermoelectric materials: a case study of SnTe

2021

Journal Article

Thermal reductive perforation of graphene cathode for high‐performance aluminum‐ion batteries

Kong, Yueqi, Tang, Cheng, Huang, Xiaodan, Nanjundan, Ashok Kumar, Zou, Jin, Du, Aijun and Yu, Chengzhong (2021). Thermal reductive perforation of graphene cathode for high‐performance aluminum‐ion batteries. Advanced Functional Materials, 31 (17) 2010569. doi: 10.1002/adfm.202010569

Thermal reductive perforation of graphene cathode for high‐performance aluminum‐ion batteries