Electrical Properties Of Compound 2d Semiconductor Mo1-Xnbxs2

ieee international conference on solid state and integrated circuit technology(2018)

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摘要
In order for TMD such as molybdenum disulfide (MoS2) to be useful for semiconductor industry, a controllable doping process is required. MoS2 with substitutional Nb shows a p-type behavior compared to the n-type characteristics of nominal films. In this work, the role of Nb in MoS2 will be examined, and a precise hole concentration control technique is demonstrated. Multi-layered Mo1-xNbxS2 samples with accurately controlled Nb mole fraction are synthesized. Electrical characterization and material analysis are performed to quantify the impact of Nb with mole fraction from 3.5% to 11%. The effective carrier concentration (p) and the ective hole mobility (mu(eff)) are found to be highly non-linear with respect to Nb mole fraction. Scanning Tunneling Microscope (STM) shows that the bandgap of the 2D transition metal dichalcogenide (TMD) is reduced by high mole fraction Nb. Therefore, Mo1-xNbxS2 can be considered as a compound TMD semiconductor.
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electrical properties,molybdenum disulfide,semiconductor industry,controllable doping process,substitutional Nb,p-type behavior,n-type characteristics,nominal films,precise hole concentration control technique,multilayered Mo,accurately controlled Nb mole fraction,material analysis,effective hole mobility,2D transition metal dichalcogenide,high mole fraction Nb,compound TMD semiconductor,effective carrier concentration,compound 2D semiconductor,Mo1-xNbxS2
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