Jian Pan
Jian Pan
School of Chemical Engineering, UNSW
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On the True Photoreactivity Order of {001}, {010}, and {101} Facets of Anatase TiO2 Crystals
J Pan, G Liu, GQ Lu, HM Cheng
Angewandte Chemie International Edition 50 (9), 2133-2137, 2011
Titanium dioxide crystals with tailored facets
G Liu, HG Yang, J Pan, YQ Yang, GQ Lu, HM Cheng
Chemical reviews 114 (19), 9559-9612, 2014
Visible light responsive nitrogen doped anatase TiO2 sheets with dominant {001} facets derived from TiN
G Liu, HG Yang, X Wang, L Cheng, J Pan, GQ Lu, HM Cheng
Journal of the American Chemical Society 131 (36), 12868-12869, 2009
Unsaturated edge-anchored Ni single atoms on porous microwave exfoliated graphene oxide for electrochemical CO2
Y Cheng, S Zhao, H Li, S He, JP Veder, B Johannessen, J Xiao, S Lu, ...
Applied Catalysis B: Environmental 243, 294-303, 2019
Synthesis of anatase TiO 2 rods with dominant reactive {010} facets for the photoreduction of CO 2 to CH 4 and use in dye-sensitized solar cells
J Pan, X Wu, L Wang, G Liu, GQM Lu, HM Cheng
Chemical Communications 47 (29), 8361-8363, 2011
From waste Coca ColaŽ to activated carbons with impressive capabilities for CO2 adsorption and supercapacitors
Y Boyjoo, Y Cheng, H Zhong, H Tian, J Pan, VK Pareek, JF Lamonier, ...
Carbon 116, 490-499, 2017
A sea-change: manganese doped nickel/nickel oxide electrocatalysts for hydrogen generation from seawater
X Lu, J Pan, E Lovell, TH Tan, YH Ng, R Amal
Energy & Environmental Science 11 (7), 1898-1910, 2018
Heteroatom‐Modulated Switching of Photocatalytic Hydrogen and Oxygen Evolution Preferences of Anatase TiO2 Microspheres
G Liu, J Pan, L Yin, JTS Irvine, F Li, J Tan, P Wormald, HM Cheng
Advanced functional materials 22 (15), 3233-3238, 2012
TiO 2 films with oriented anatase {001} facets and their photoelectrochemical behavior as CdS nanoparticle sensitized photoanodes
X Wang, G Liu, L Wang, J Pan, GQM Lu, HM Cheng
Journal of Materials Chemistry 21 (3), 869-873, 2011
A fully reversible water electrolyzer cell made up from FeCoNi (oxy) hydroxide atomic layers
Q Zhang, NM Bedford, J Pan, X Lu, R Amal
Advanced Energy Materials 9 (29), 1901312, 2019
On the engineering part of solar hydrogen production from water splitting: photoreactor design
Z Xing, X Zong, J Pan, L Wang
Chemical Engineering Science 104, 125-146, 2013
Greatly enhanced electronic conduction and lithium storage of faceted TiO2 crystals supported on metallic substrates by tuning crystallographic orientation of TiO2
G Liu, LC Yin, J Pan, F Li, L Wen, C Zhen, HM Cheng
Advanced Materials 27 (23), 3507-3512, 2015
Heterojunction Photocatalysts Based on 2D Materials: The Role of Configuration
Q Su, Y Li, R Hu, F Song, S Liu, C Guo, S Zhu, W Liu, J Pan
Advanced Sustainable Systems 4 (9), 2000130, 2020
Hydrothermal Synthesis of a Crystalline Rutile TiO2 Nanorod Based Network for Efficient Dye‐Sensitized Solar Cells
H Yu, J Pan, Y Bai, X Zong, X Li, L Wang
Chemistry-A European Journal 19 (40), 13569-13574, 2013
Gas phase electrochemical conversion of humidified CO2 to CO and H2 on proton-exchange and alkaline anion-exchange membrane fuel cell reactors
G Wang, J Pan, SP Jiang, H Yang
Journal of CO2 Utilization 23, 152-158, 2017
Design and synthesis of porous ZnTiO 3/TiO 2 nanocages with heterojunctions for enhanced photocatalytic H 2 production
H Tian, S Wang, C Zhang, JP Veder, J Pan, M Jaroniec, L Wang, J Liu
Journal of Materials Chemistry A 5, 11615-11622, 2017
Step-wise controlled growth of metal@ TiO 2 core–shells with plasmonic hot spots and their photocatalytic properties
T Butburee, Y Bai, J Pan, X Zong, C Sun, G Liu, L Wang
Journal of Materials Chemistry A 2 (32), 12776-12784, 2014
Advances in Multicompartment Mesoporous Silica Micro/Nanoparticles for Theranostic Applications
J Liu, T Liu, J Pan, S Liu, GQ Lu
Annual review of chemical and biomolecular engineering 9, 389-411, 2018
Tungsten Oxide/Carbide Surface Heterojunction Catalyst with High Hydrogen Evolution Activity
Y Cui, X Tan, K Xiao, S Zhao, NM Bedford, Y Liu, Z Wang, KH Wu, J Pan, ...
ACS Energy Letters 5 (11), 3560-3568, 2020
A nonstoichiometric SnO 2− δ nanocrystal-based counter electrode for remarkably improving the performance of dye-sensitized solar cells
J Pan, L Wang, CY Jimmy, G Liu, HM Cheng
Chemical Communications 50 (53), 7020-7023, 2014
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