Zobrazeno 1 - 10
of 51
pro vyhledávání: '"Zhengchen, Wu"'
Publikováno v:
Nano-Micro Letters, Vol 14, Iss 1, Pp 1-14 (2022)
Abstract MXene, as a rising star of two-dimensional (2D) materials, has been widely applied in fields of microwave absorption and electromagnetic shielding to cope with the arrival of the 5G era. However, challenges arise due to the excessively high
Externí odkaz:
https://doaj.org/article/421cd6cb264d4f74ab288df72b40d09c
Autor:
Chunyang Xu, Panbo Liu, Zhengchen Wu, Huibin Zhang, Ruixuan Zhang, Chang Zhang, Lei Wang, Longyuan Wang, Bingtong Yang, Ziqi Yang, Wenbin You, Renchao Che
Publikováno v:
Advanced Science, Vol 9, Iss 17, Pp n/a-n/a (2022)
Abstract Heterointerface engineering is evolving as an effective approach to tune electromagnetic functional materials, but the mechanisms of heterointerfaces on microwave absorption (MA) remain unclear. In this work, abundant electromagnetic heteroi
Externí odkaz:
https://doaj.org/article/957f20c93a52492e8b8da25cad80e857
Autor:
Chunyang Xu, Lei Wang, Xiao Li, Xiang Qian, Zhengchen Wu, Wenbin You, Ke Pei, Gang Qin, Qingwen Zeng, Ziqi Yang, Chen Jin, Renchao Che
Publikováno v:
Nano-Micro Letters, Vol 13, Iss 1, Pp 1-15 (2021)
Abstract Hierarchical magnetic-dielectric composites are promising functional materials with prospective applications in microwave absorption (MA) field. Herein, a three-dimension hierarchical “nanotubes on microrods,” core–shell magnetic metal
Externí odkaz:
https://doaj.org/article/233bc7c5f50a46beb3b274ee44ad9810
Autor:
Ziqi Yang, Wenbin You, Xuhui Xiong, Ruixuan Zhang, Zhengchen Wu, Biao Zhao, Min Wang, Xianhu Liu, Xuefeng Zhang, Renchao Che
Publikováno v:
ACS Applied Materials & Interfaces. 14:32369-32378
The regulation of magnetic configuration through diverse morphologies to achieve a rapid magnetic response has attracted considerable academic favor on account of the unique application prospects in various fields. Herein, porous FeCo alloys with mor
Publikováno v:
Journal of Materials Chemistry A. 10:8807-8816
The strong magnetic coupling effect and intensive interfacial polarization endow hierarchical core–shell Fe3O4@C composites with excellent microwave absorption performance.
Autor:
Xiaoyu Wang, Wenbin You, Liting Yang, Guanyu Chen, Zhengchen Wu, Chang Zhang, Qianjin Chen, Renchao Che
Publikováno v:
Nanoscale advances. 4(16)
The designed MoS2/MXene/nickel foam heterostructure displays an ultralow overpotential of 94 mV with a Tafel slope of only 59 mV dec−1 in alkaline hydrogen evolution reaction, due to the more active site and the improved conductivity.
Publikováno v:
ACS Applied Materials & Interfaces. 13:5866-5876
The accurate heterojunction engineering in MXene-based composites unprecedentedly boosts their electromagnetic (EM) wave absorption and shielding performance. However, the flocculation of MXene caused by abundant termination groups severely restricts
Autor:
Zhengchen Wu, Xiang Qian, Ziqi Yang, Chen Jin, Chunyang Xu, Lei Wang, Qingwen Zeng, Xiao Li, Ke Pei, Renchao Che, Wenbin You, Gang Qin
Publikováno v:
Nano-Micro Letters, Vol 13, Iss 1, Pp 1-15 (2021)
Nano-Micro Letters
Nano-Micro Letters
Highlights Three-dimension hierarchical core–shell Mo2N@CoFe@C/CNT composites were successfully constructed via a fast MOF-based ligand exchange strategy.Abundant magnetic CoFe nanoparticles suspended within “nanotubes on microrods” matrix exhi
Publikováno v:
Nanoscale. 13:5115-5124
Structural engineering represents a major trend in the field of two-dimensional (2D) materials regarding microscopic interfacial electric/dielectric properties and macroscopic device strategies. 2D molybdenum disulfide (MoS2) with semiconductive feat
Autor:
Guanyu Chen, Wenbin You, Lei Wang, Huiqiao Guo, Min Wang, Xiao Li, Renchao Che, Zhengchen Wu, Xiang Qian, Liting Yang
Publikováno v:
ACS Applied Materials & Interfaces. 12:16831-16840
As a hot two-dimensional (2D) material, molybdenum disulfide has been attracting extensive attention for electromagnetic wave response applications because of its unique structure. However, the electronic conductivity of nanostructured MoS2 needs to