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RSC Advances|July 14, 2025
Enhancing InSe monolayer via full hydrogenation: insights into electronic structure, piezoelectricity, and charge mobilityDat D Vo, Tuan V Vu, A I Kartamyshev, et al.Nanoscale Advances|October 10, 2024
Monolayers Sn2Te2X4 (X = P, As) as promising materials for photocatalytic water splitting and flexible devices: a DFT studyDat D Vo, Tuan V Vu, A I Kartamyshev, et al.RSC Advances|February 20, 2026
DFT study of halogenated InTeX (X = Cl, Br and I) monolayers: promising 2D materials for nanoelectronicsTuan V Vu, Dat D Vo, Oleg Khyzhun, et al.Dalton Transactions (Cambridge, England : 2003)|November 8, 2024
Exploring the versatility of MoSe2/WS2 heterostructuresTuan V Vu, Dat D Vo, Cuong Q Nguyen, et al.RSC Advances|May 8, 2026
First-principles study of AlGaSi2X6 (X = S, Se, Te) monolayers: structural, electronic, transport and photocatalytic propertiesThi H Ho, Tuan V Vu, A I Kartamyshev, et al.RSC Advances|May 2, 2022
Theoretical and experimental study on the electronic and optical properties of K0.5Rb0.5Pb2Br5: a promising laser host materialTuan V Vu, A A Lavrentyev, B V Gabrelian, et al.RSC Advances|May 6, 2022
Optical and electronic properties of lithium thiogallate (LiGaS2): experiment and theoryTuan V Vu, A A Lavrentyev, B V Gabrelian, et al.RSC Advances|May 2, 2022
Effects of electric field and strain engineering on the electronic properties, band alignment and enhanced optical properties of ZnO/Janus ZrSSe heterostructuresDat D Vo, Tuan V Vu, Thi H Tham Nguyen, et al.Physical Chemistry Chemical Physics : PCCP|November 19, 2019
Band alignment and optical features in Janus-MoSeTe/X(OH)2 (X = Ca, Mg) van der Waals heterostructuresDat D Vo, Tuan V Vu, Nguyen V Hieu, et al.RSC Advances|May 2, 2022
First-principles prediction of chemically functionalized InN monolayers: electronic and optical propertiesTuan V Vu, Khang D Pham, Tri Nhut Pham, et al.Pageof 1