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典型文献
Lattice Mismatch Induced Tunable Dimensionality of Transition Metal Di-chalcogenides
文献摘要:
Low-dimensional materials have excellent proper-ties which are closely related to their dimensionality.However,the growth mechanism underlying tun-able dimensionality from 2D triangles to 1D ribbons of such materials is still unrevealed.Here,we estab-lish a general kinetic Monte Carlo model for transi-tion metal dichalcogenides(TMDs)growth to ad-dress such an issue.Our model is able to reproduce several key findings in experiments,and reveals that the dimensionality is determined by the lattice mismatch and the interaction strength be-tween TMDs and the substrate.We predict that the dimensionality can be well tuned by the interaction strength and the geometry of the substrate.Our work deepens the understanding of tunable dimensionality of low-dimensional materials and may inspire new concepts for the design of such materials with expected dimensionality.
文献关键词:
作者姓名:
Hanxiao Dong;Huijun Jiang;Zhonghuai Hou
作者机构:
Department of Chemical Physics,Hefei National Research Center for Physical Sciences at the Microscale,University of Science and Technology of China,Hefei 230026,China
引用格式:
[1]Hanxiao Dong;Huijun Jiang;Zhonghuai Hou-.Lattice Mismatch Induced Tunable Dimensionality of Transition Metal Di-chalcogenides)[J].化学物理学报(英文版),2022(06):853-859
A类:
unrevealed
B类:
Lattice,Mismatch,Induced,Tunable,Dimensionality,Transition,Metal,Low,materials,have,excellent,proper,ties,which,are,closely,related,their,dimensionality,However,growth,mechanism,underlying,from,2D,triangles,1D,ribbons,such,still,Here,estab,lish,general,kinetic,Monte,Carlo,model,transi,metal,dichalcogenides,TMDs,ad,dress,issue,Our,reproduce,several,key,findings,experiments,reveals,that,determined,by,lattice,mismatch,interaction,strength,be,tween,substrate,We,predict,can,well,tuned,geometry,work,deepens,understanding,tunable,low,may,inspire,new,concepts,design,expected
AB值:
0.630781
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