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首页> 外文期刊>Applied Surface Science >Theoretical investigation of the water splitting photocatalytic properties of pristine, Nb and V doped, and Nb-V co-doped (111) TaON nanosheets
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Theoretical investigation of the water splitting photocatalytic properties of pristine, Nb and V doped, and Nb-V co-doped (111) TaON nanosheets

机译:原始,Nb和V掺杂的水分裂光催化性能的理论研究,NB-V共掺杂(111)陶纳米

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摘要

The water splitting photocatalytic properties of the pristine, Nb/V doped, and Nb-V co-doped (111) nanosheets of beta-TaON have been studied using the density functional theory (DFT) employing the PBE-U method. The calculated valance (VB) and conduction band (CB) energy edges of (111) TaON nanosheet were -6.67 and -4.17 eV, respectively with the bandgap of 2.49 eV. Doping Nb and V ions in the nanosheet structure mainly affected the CB and decreased the energy bandgap. Also, by increasing dopant concentration, the CB edge and bandgap energy of Nb/V doped (111) TaON nanosheets decreased. Doping V ions decreased the CB edge of nanosheet more than doping Nb ions so that the CB edge of V doped (111) TaON nanosheets were located at lower energy levels compared to the H+ /H-2 reduction potential, thus, the V doped nanosheets can only be used as n-type water splitting nanosheets. Among considered Nb doped (111) TaON nanosheets, the (111) Nb0.25Ta0.75ON and Nb0.125Ta0.875ON nanosheets with CB edge energy of -4.37 and -4.30 eV were more suitable for water splitting photocatalyst than pristine (111) TaON nanosheet. The calculations on the Nb-V co-doped (111) TaON nanosheets showed them as appropriate n-type water splitting photocatalysts.
机译:使用采用PBE-U方法的密度泛函理论(DFT)研究了原始,Nb / V掺杂和Nb-V掺杂(111)纳米末端的水分裂光催化性能。 (111)Taon Nanosheet的计算价(VB)和导通带(CB)能量边缘分别与2.49eV的带隙分别为-6.67和-4.17eV。掺杂Nb和V离子在纳米片结构中主要影响CB并降低能量带隙。而且,通过增加掺杂剂浓度,Nb / V掺杂的Cb边缘和带隙能量(111)陶纳晶片减少。掺杂V离子比掺杂Nb离子的纳米片的CB边缘降低,使得与H + / H-2减少电位相比,V掺杂(111)陶纳芯的CB边缘位于较低的能量水平下,因此V掺杂纳米片只能用作n型水分解纳米液。在审议的Nb掺杂(111)陶纳,(111)Nb0.25ta0.75on和Nb0.125ta0.875on,具有-4.37和-4.30eV的Cb边缘能量的纳米液更适合于水分裂光催化剂而不是原始(111)陶nanosheet。 NB-V共掺杂(111)陶纳孔的计算显示它们作为适当的N型水分解光催化剂。

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