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Yingping Pang
Yingping Pang
Post-doc, Shandong University
Verified email at postgrad.curtin.edu.au
Title
Cited by
Cited by
Year
Emerging two-dimensional nanomaterials for electrochemical nitrogen reduction
Y Pang, C Su, G Jia, L Xu, Z Shao
Chemical Society Reviews 50 (22), 12744-12787, 2021
792021
Heavy‐metal‐free colloidal semiconductor nanorods: recent advances and future perspectives
G Jia, Y Pang, J Ning, U Banin, B Ji
Advanced Materials 31 (25), 1900781, 2019
682019
Enhanced catalytic activity in liquid‐exfoliated FeOCl nanosheets as a Fenton‐like catalyst
J Zhang, XL Jiao, YG Xia, FF Liu, YP Pang, XF Zhao, DR Chen
Chemistry–A European Journal 22 (27), 9321-9329, 2016
652016
Spontaneous Formation of Noble‐and Heavy‐Metal‐Free Alloyed Semiconductor Quantum Rods for Efficient Photocatalysis
D Chen, H Zhang, Y Li, Y Pang, Z Yin, H Sun, LC Zhang, S Wang, ...
Advanced Materials 30 (39), 1803351, 2018
572018
Colloidal Single‐Layer Photocatalysts for Methanol‐Storable Solar H2 Fuel
Y Pang, MN Uddin, W Chen, S Javaid, E Barker, Y Li, A Suvorova, ...
Advanced materials 31 (49), 1905540, 2019
532019
Nonepitaxial Gold‐Tipped ZnSe Hybrid Nanorods for Efficient Photocatalytic Hydrogen Production
W Chen, X Li, F Wang, S Javaid, Y Pang, J Chen, Z Yin, S Wang, Y Li, ...
Small 16 (12), 1902231, 2020
512020
Metal‐Organic Framework Derived Porous α‐Fe2O3/C Nano‐shuttles for Enhanced Visible‐light Photocatalysis
Y Pang, Z Li, X Jiao, D Chen, C Li
ChemistrySelect 5 (3), 1047-1053, 2020
262020
In situ growth of copper (ii) phthalocyanine-sensitized electrospun CeO 2/Bi 2 MoO 6 nanofibers: a highly efficient photoelectrocatalyst towards degradation of tetracycline
K Li, Y Pang, Q Lu
Inorganic Chemistry Frontiers 6 (11), 3215-3224, 2019
242019
Structural phase-transition in CeVO4 nanobelts by P-doping enables better levofloxacin photocatalysis
W Ding, X Zhang, X Liu, Q Lu, M Wei, Y Pang
Journal of Environmental Chemical Engineering 9 (5), 105985, 2021
232021
Structural regulation of ZnGa2O4 nanocubes for achieving high capacity and stable rate capability as an anode material of lithium ion batteries
N Han, D Chen, Y Pang, Z Han, Y Xia, X Jiao
Electrochimica Acta 235, 295-303, 2017
232017
Hierarchical Co9S8/ZnIn2S4 Nanoflower Enables Enhanced Hydrogen Evolution Photocatalysis
Q Li, Q Lu, E Guo, M Wei, Y Pang
Energy & Fuels 36 (8), 4541-4548, 2022
222022
Why do colloidal wurtzite semiconductor nanoplatelets have an atomically uniform thickness of eight monolayers?
Y Pang, M Zhang, D Chen, W Chen, F Wang, SJ Anwar, M Saunders, ...
The Journal of Physical Chemistry Letters 10 (12), 3465-3471, 2019
212019
When nitrogen reduction meets single-atom catalysts
Y Pang, C Su, L Xu, Z Shao
Progress in Materials Science 132, 101044, 2023
202023
Plasmonic Au functionalized 3D SrTiO3/TiO2 hollow nanosphere enables efficient solar water splitting
C Hu, C Tai, W Zhang, Q Lu, M Wei, C Si, E Guo, Y Pang
Journal of Alloys and Compounds 930, 167449, 2023
192023
Visible-light-active 1D Ag-CoWO4/CdWO4 plasmonic photocatalysts boosting levofloxacin conversion
F Rong, Y Xue, W Tang, Q Lu, M Wei, E Guo, Y Pang
Journal of the Taiwan Institute of Chemical Engineers 133, 104267, 2022
182022
Flexible Bi2MoO6/N-doped carbon nanofiber membrane enables tetracycline photocatalysis for environmentally safe growth of Vigna radiata
Y Xue, W Tang, H Gu, M Wei, E Guo, Q Lu, Y Pang
Journal of Alloys and Compounds 902, 163860, 2022
172022
0D/2D/1D silver-decorated CuPc/Bi2MoO6 Z-scheme heterojunctions enable better visible-light-driven tetracycline photocatalysis
Y Xue, W Tang, C Si, Q Lu, E Guo, M Wei, Y Pang
Optical Materials 128, 112400, 2022
162022
High-performance hybrid supercapacitors based on hierarchical NiC2O4/Ni (OH) 2 nanospheres and biomass-derived carbon
X Gao, X Zhang, Q Lu, E Guo, C Si, M Wei, Y Pang
Applied Surface Science 595, 153571, 2022
142022
Spontaneous shape and phase control of colloidal ZnSe nanocrystals by tailoring Se precursor reactivity
W Chen, A Karton, T Hussian, S Javaid, F Wang, Y Pang, G Jia
CrystEngComm 21 (18), 2955-2961, 2019
132019
3D hierarchical porous NiO nanoflowers as an advanced anode material with remarkable lithium storage performance
Y Pang, J Zhang, D Chen, X Jiao
RSC advances 6 (36), 30395-30400, 2016
132016
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