Segui
Ning Lu
Ning Lu
Anhui Normal University
Email verificata su mail.ustc.edu.cn
Titolo
Citata da
Citata da
Anno
Phosphorene nanoribbons, phosphorus nanotubes, and van der Waals multilayers
H Guo, N Lu, J Dai, X Wu, XC Zeng
The Journal of Physical Chemistry C 118 (25), 14051-14059, 2014
6482014
MoS 2/MX 2 heterobilayers: bandgap engineering via tensile strain or external electrical field
N Lu, H Guo, L Li, J Dai, L Wang, WN Mei, X Wu, XC Zeng
Nanoscale 6 (5), 2879-2886, 2014
3812014
Tuning electronic and magnetic properties of early transition-metal dichalcogenides via tensile strain
H Guo, N Lu, L Wang, X Wu, XC Zeng
The Journal of Physical Chemistry C 118 (13), 7242-7249, 2014
2602014
Tunable magnetism in a nonmetal-substituted ZnO monolayer: a first-principles study
H Guo, Y Zhao, N Lu, E Kan, XC Zeng, X Wu, J Yang
The Journal of Physical Chemistry C 116 (20), 11336-11342, 2012
1972012
CO2 Capture on h-BN Sheet with High Selectivity Controlled by External Electric Field
H Guo, W Zhang, N Lu, Z Zhuo, XC Zeng, X Wu, J Yang
The Journal of Physical Chemistry C 119 (12), 6912-6917, 2015
1902015
Electronic structure engineering via on-plane chemical functionalization: a comparison study on two-dimensional polysilane and graphane
N Lu, Z Li, J Yang
The Journal of Physical Chemistry C 113 (38), 16741-16746, 2009
1512009
CaP3: A New Two-Dimensional Functional Material with Desirable Band Gap and Ultrahigh Carrier Mobility
N Lu, Z Zhuo, H Guo, P Wu, W Fa, X Wu, XC Zeng
J. Phys. Chem. Lett. 9, 1728-1733, 2018
1302018
van der Waals trilayers and superlattices: modification of electronic structures of MoS 2 by intercalation
N Lu, H Guo, L Wang, X Wu, XC Zeng
Nanoscale 6 (9), 4566-4571, 2014
1272014
Structure of graphene oxide: thermodynamics versus kinetics
N Lu, D Yin, Z Li, J Yang
The Journal of Physical Chemistry C 115 (24), 11991-11995, 2011
1052011
First principles nuclear magnetic resonance signatures of graphene oxide
N Lu, Y Huang, H Li, Z Li, J Yang
The Journal of chemical physics 133 (3), 2010
782010
Twisted MX 2/MoS 2 heterobilayers: effect of van der Waals interaction on the electronic structure
N Lu, H Guo, Z Zhuo, L Wang, X Wu, XC Zeng
Nanoscale 9, 19131-19138, 2017
542017
Single copper sites dispersed on hierarchically porous carbon for improving oxygen reduction reaction towards zinc-air battery
W Wu, Y Liu, D Liu, W Chen, Z Song, X Wang, Y Zheng, N Lu, C Wang, ...
Nano Research 14, 998-1003, 2021
492021
Simulation Evidence of Hexagonal‐to‐Tetragonal ZnSe Structure Transition: A Monolayer Material with a Wide‐Range Tunable Direct Bandgap
L Li, P Li, N Lu, J Dai, XC Zeng
Advanced Science 2 (12), 1500290, 2015
492015
Copper (i) sulfide: a two-dimensional semiconductor with superior oxidation resistance and high carrier mobility
Y Guo, Q Wu, Y Li, N Lu, K Mao, Y Bai, J Zhao, J Wang, XC Zeng
Nanoscale Horizons 4 (1), 223-230, 2019
472019
Dual‐Regulation of Defect Sites and Vertical Conduction by Spiral Domain for Electrocatalytic Hydrogen Evolution
X Tong, Y Zhao, Z Zhuo, Z Yang, S Wang, Y Liu, N Lu, H Li, T Zhai
Angewandte Chemie 134 (7), e202112953, 2022
392022
Penta-MX 2 (M= Ni, Pd and Pt; X= P and As) monolayers: direct band-gap semiconductors with high carrier mobility
S Qian, X Sheng, X Xu, Y Wu, N Lu, Z Qin, J Wang, C Zhang, E Feng, ...
Journal of Materials Chemistry C 7 (12), 3569-3575, 2019
362019
Rare earth dopant (Nd, Gd, Dy, and Er) hybridization in lithium tetraborate
TD Kelly, JC Petrosky, JW McClory, VT Adamiv, YV Burak, BV Padlyak, ...
Frontiers in Physics 2, 31, 2014
282014
Back‐gated van der Waals heterojunction manipulates local charges toward fine‐tuning hydrogen evolution
J Huang, Z Zhuang, Y Zhao, J Chen, Z Zhuo, Y Liu, N Lu, H Li, T Zhai
Angewandte Chemie 134 (32), e202203522, 2022
272022
A computational infrared spectroscopic study of graphene oxide
D Yin, N Lu, Z Li, J Yang
The Journal of Chemical Physics 139 (8), 2013
222013
Effects of line defects on the electronic properties of ZnO nanoribbons and sheets
N Lu, H Guo, W Hu, X Wu, XC Zeng
Journal of Materials Chemistry C 5 (12), 3121-3129, 2017
172017
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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