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11篇 您的检索式:作者名="HU Dechao"
    题名 作者 年代 出处 被引量
1Synthesis of Large-Area, Few-Layer Graphene on Iron Foil by Chemical Vapor Deposition显示文摘我们表明一个简单、可控制的方法综合大区域,由优化化学蒸汽免职(CVD ) 的铁底层上的很少层 graphene 用甲烷和氢的混合物的方法。基于 Fe-C 阶段图的分析,为 Fe 表面上的 graphene 的成功的合成的一个合适的过程被设计。适当温度和冷却过程被发现在高度水晶的很少层 graphene 的合成很重要。基于 Graphene 的地效果晶体管(联邦货物税) 设备用产生很少层 graphene 被制作,并且与 3001150 cm2/ 的提取活动性显示出好质量(V 敢椠 ?? 敤瑢吗?Yunzhou Xue Bin Wu Yunlong Guo Liping Huang Lang Jiang Jianyi Chen Dechao Geng Yunqi Liu Wenping Hu Gui Yu 2011Nano Research2011,4,12:7
2Properties of the Eulerian-Lagrangian method using linear in terpolators in a three- dimensional shallow water model using z-level coordinates 显示文摘HU Dechao ZHANG Hongwu ZHONG Deyu 2009International Journal of Computational Fluid Dynamics2009,23,3:1
3Properties of the Eulerian-Lagrangian method using linear interpolators in a three- dimensional shallow water model using z-level coordinates 显示文摘HU Dechao ZHANG Hongwu ZHONG Deyu 2009International Journal of Computational Fluid Dynamics2009,23,3:1
4Chemical vapor deposition for few‐layer two‐dimensional materials显示文摘Chemical vapor deposition(CVD)approach offers a controllable strategy for preparing large‐area and high‐quality few‐layer(mainly bilayer or trilayer)twisted or untwisted two‐dimensional(2D)materials,and is predicted to boost the development of 2D materials from laboratory research to industrial applications.Qing Zhang Dechao Geng Wenping Hu 2023SmartMat2023,4,3:1
5Near‐Equilibrium Chemical Vapor Deposition of High‐Quality Single‐Crystal Graphene Directly on Various Dielectric Substrates显示文摘Jianyi Chen Yunlong Guo Lili Jiang Zhiping Xu Liping Huang Yunzhou Xue Dechao Geng Bin Wu Wenping Hu Gui Yu Yunqi Liu 2014Adv. Mater2014,,9:1
6Multi-stage anisotropic etching of two-dimensional heterostructures显示文摘Regarding the reverse process of materials growth,etching has been widely concerned to indirectly probe the growth kinetics,offering an avenue in governing the growth of two-dimensional(2D)materials.In this work,interface-driven anisotropic etching mode is demonstrated for the first time to be generally applied to 2D heterostructures.It is shown that the typical in-plane graphene and hexagonal boron nitride(h-BN)heterostructures follow a multi-stage etching behavior initiated first along the interfacial region between the two materials and then along edges of neighboring h-BN flakes and finally along central edges of hBN.By accurately tuning etching conditions in the chemical vapor deposition process,series of etched 2D heterostructure patterns are controllably produced.Furthermore,scaled formation of graphene and h-BN heterostructures arrays has been realized with full assist of as-proposed etching mechanism,offering a direct top-down method to make 2D orientated heterostructures with order and complexity.Detection of interface-driven multi-staged anisotropic etching mode will shed light on understanding growth mechanism and further expanding wide applications of 2D heterostructures.Lin Li Jichen Dong Dechao Geng Menghan Li Wei Fu Feng Ding Wenping Hu Hui Ying Yang 2022Nano Research2022,15,6:0
7Erratum to:Multi-stage anisotropic etching of two-dimensional heterostructures显示文摘Erratum to Nano Research 2022,15(6):4909−4915 http://gffzzd3cc09b8251d45dfsq9bqfwnxupbb655x.ffgz.tsg.suse.edu.cn/10.1007/s12274-022-4193-x The affiliation of the author“Feng Ding”was unfortunately mistakenly marked.This error did not affect any of the content and conclusions from the published paper.In addition,one funding was unfortunately forgotten.This error did not affect any of the content and conclusions from the published paper.Lin Li Jichen Dong Dechao Geng Menghan Li Wei Fu Feng Ding Wenping Hu Hui Ying Yang 2022Nano Research2022,15,7:0
8van der Waals type II carbon nitride homojunctions for visible light photocatalytic hydrogen evolution显示文摘Photocatalytic hydrogen evolution reaction(PC-HER)provides a solution to energy crisis and environmental pollution.Herein,different graphitic carbon nitride(g-C_(3)N_(4))-based van der Waals(vdW)type II homojunctions have been fabricated and g-C_(3)N_(4)/Kdoped g-C_(3)N_(4)nanosheets have an outstanding PC-HER rate of 1,243μmol·h^(−1)·g^(−1)under visible light,higher than that of bulk g-C_(3)N_(4),doped g-C_(3)N_(4)nanosheets,and mixed nanosheets.The enhanced PC-HER performance can be ascribed to the cooperative effects of the shortened bandgap,enlarged specific surface area,matched type II energy band structure,“face to face”vdW charge interaction,and peculiarly partite positions of the conduction and valence bands in different layers.Besides,the type II junctions were found superior to binary type II junction.This study highlights the synergistic effect of different strategies in improving the PC-HER capacities of g-C_(3)N_(4),especially the application of particular vdW junctions,and provides new insights to the structures and mechanism.Xiaojie Li Panpan Zhang Huayang Zhang Wenjie Tian Yangyang Yang Kunsheng Hu Dechao Chen Qin Li Xiaoguang Duan Hongqi Sun Shaobin Wang 2023Nano Research2023,16,4:0
9Controlled growth of Mo2C pyramids on liquid Cu surface显示文摘Precise spatial control of 2D materials is the key capability of engineering their optical,electronic,and mechanical properties.However,growth of novel 2D Mo2C on Cu surface by chemical vapor deposition method was revealed to be seed-induced 2D growth,limiting further synthesis of complex Mo2C spatial structures.In this research,we demonstrate the controlled growth of Mo2C pyramids with numerous morphologies,which are characterized with clear terraces within the structures.The whole evolution for Mo2C pyramids in the coursed of CVD process has been detected,posing significant potential in probing growth mechanism.The formation of the Mo2C pyramids arises from the supersaturation-induced nucleation and concentration-gradient driven diffused growth of a new Mo2C layer on the edged areas of intrinsic ones,as supported by STEM imaging.This work provides a novel Mo2C-based pyramid structure and further reveals a sliding growth mechanism,which could offer impetus for the design of new 3D spatial structures of Mo2C and other 2D materials.Yixuan Fan Le Huang Dechao Geng Wenping Hu 2020Journal of Semiconductors2020,41,8:0
10Recent Advances in Growth,Properties and Applications of 2D Inorganic Molecular Crystals显示文摘Comprehensive Summary Since the concept of 2D inorganic molecular crystals(2DIMCs)was introduced,intensive attentions have been gradually devoted to this field.Herein,the very recent advances in growth,properties,and applications of 2D inorganic molecular crystals are comprehensively reviewed.Firstly,the newly emerged 2DIMCs are classified into three categories.Then the two typical production methods are present,thus leading to discrepancy in size,distribution,morphology and structures of 2DIMCs.Moreover,the unique physicochemical properties of 2DIMCs are demonstrated on the basis of the as-obtained 2DIMCs,the various applications are exhibited,demonstrating significant potential in related fields.Finally,the perspective and prospects are outlooked to offer insights in further development of 2DIMCs.Menghan Li Yang Guo Lin Li Dechao Geng Wenping Hu 2023Chinese Journal of Chemistry2023,41,15:0
11MXene-MoS_(2)nanocomposites via chemical vapor deposition with enhanced electrocatalytic activity for hydrogen evolution显示文摘As a new paradigm of material science,two-dimensional(2D)heterostructured composites have attracted extensive interests because of combining the collective advantages and collaborative characteristics of individual building blocks.Molybdenum disulfide(MoS_(2))has demonstrated great promise as a low-cost substitute to platinum-based catalysts for electrochemical hydrogen production.However,the broad adoption of MoS_(2)is hindered by its limited number of active sites and low inherent electrical conductivity.One of the promising methods to further activate MoS_(2)is coupling engineering.Here,we demonstrate for the first time the synthesis of 2D MXene-MoS_(2)nanocomposites through chemical vapor deposition(CVD)approach,thus leading to precise design in structure type and orientation.The computational results show that nanocomposites have metallic properties.Owing to their unique 2D/2D structure,MXene-MoS_(2)nanocomposites exhibit more active catalytic sites,resulting in higher electrochemical performance,as inherited from parent excellent characteristics,and a much lower overpotential of~69 mV at a current density of 10 mA·cm^(-2) is achieved.This work paves the way to employ CVD method by coupling engineering to construct 2D nanocomposites for energy storage applications.Ruijie Zhang Yajing Sun Fei Jiao Lin Li Dechao Geng Wenping Hu 2023Nano Research2023,16,7:0
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