Folgen
Jing Pan
Jing Pan
Birla Carbon
Bestätigte E-Mail-Adresse bei whu.edu.cn - Startseite
Titel
Zitiert von
Zitiert von
Jahr
Alkaline polymer electrolyte fuel cells completely free from noble metal catalysts
S Lu, J Pan, A Huang, L Zhuang, J Lu
Proceedings of the National Academy of Sciences 105 (52), 20611-20614, 2008
8062008
High‐Performance alkaline polymer electrolyte for fuel cell applications
J Pan, S Lu, Y Li, A Huang, L Zhuang, J Lu
Advanced Functional Materials 20 (2), 312-319, 2010
5442010
Constructing ionic highway in alkaline polymer electrolytes
J Pan, C Chen, Y Li, L Wang, L Tan, G Li, X Tang, L Xiao, J Lu, L Zhuang
Energy & Environmental Science 7 (1), 354-360, 2014
5032014
Pt–Ru catalyzed hydrogen oxidation in alkaline media: oxophilic effect or electronic effect?
Y Wang, G Wang, G Li, B Huang, J Pan, Q Liu, J Han, L Xiao, J Lu, ...
Energy & Environmental Science 8 (1), 177-181, 2015
4892015
Designing advanced alkaline polymer electrolytes for fuel cell applications
J Pan, C Chen, L Zhuang, J Lu
Accounts of chemical research 45 (3), 473-481, 2012
4192012
Fluorine-doped carbon blacks: highly efficient metal-free electrocatalysts for oxygen reduction reaction
X Sun, Y Zhang, P Song, J Pan, L Zhuang, W Xu, W Xing
Acs Catalysis 3 (8), 1726-1729, 2013
3682013
Multication side chain anion exchange membranes
L Zhu, J Pan, Y Wang, J Han, L Zhuang, MA Hickner
Macromolecules 49 (3), 815-824, 2016
3282016
First implementation of alkaline polymer electrolyte water electrolysis working only with pure water
L Xiao, S Zhang, J Pan, C Yang, M He, L Zhuang, J Lu
Energy & Environmental Science 5 (7), 7869-7871, 2012
2802012
Elastic long-chain multication cross-linked anion exchange membranes
J Han, L Zhu, J Pan, TJ Zimudzi, Y Wang, Y Peng, MA Hickner, L Zhuang
Macromolecules 50 (8), 3323-3332, 2017
1692017
Mechanically tough and chemically stable anion exchange membranes from rigid-flexible semi-interpenetrating networks
J Pan, L Zhu, J Han, MA Hickner
Chemistry of Materials 27 (19), 6689-6698, 2015
1622015
A strategy for disentangling the conductivity–stability dilemma in alkaline polymer electrolytes
J Pan, Y Li, J Han, G Li, L Tan, C Chen, J Lu, L Zhuang
Energy & Environmental Science 6 (10), 2912-2915, 2013
1622013
Cationic side-chain attachment to poly (phenylene oxide) backbones for chemically stable and conductive anion exchange membranes
J Pan, J Han, L Zhu, MA Hickner
Chemistry of Materials 29 (12), 5321-5330, 2017
1472017
Crosslinking of comb-shaped polymer anion exchange membranes via thiol–ene click chemistry
L Zhu, TJ Zimudzi, N Li, J Pan, B Lin, MA Hickner
Polymer Chemistry 7 (14), 2464-2475, 2016
1472016
Self-crosslinked alkaline polymer electrolyte exceptionally stable at 90 C
J Pan, Y Li, L Zhuang, J Lu
Chemical Communications 46 (45), 8597-8599, 2010
1462010
High Performance Anion Exchange Membrane Fuel Cells Enabled by Fluoropoly(olefin) Membranes
MA Hickner, Liang Zhu, Xiong Peng, Shun‐Li Shang, Michael T. Kwasny, Tawanda ...
Advance Functional Materials, 2019
1432019
Functionalization of poly (2, 6-dimethyl-1, 4-phenylene oxide) s with hindered fluorene side chains for anion exchange membranes
L Zhu, J Pan, CM Christensen, B Lin, MA Hickner
Macromolecules 49 (9), 3300-3309, 2016
1162016
Mechanically robust anion exchange membranes via long hydrophilic cross-linkers
L Zhu, TJ Zimudzi, Y Wang, X Yu, J Pan, J Han, DI Kushner, L Zhuang, ...
Macromolecules 50 (6), 2329-2337, 2017
1092017
Alkaline polymer electrolyte fuel cells: Principle, challenges, and recent progress
DP Tang, J Pan, SF Lu, L Zhuang, JT Lu
Science China Chemistry 53, 357-364, 2010
1042010
Highly stable alkaline polymer electrolyte based on a poly (ether ether ketone) backbone
J Han, H Peng, J Pan, L Wei, G Li, C Chen, L Xiao, J Lu, L Zhuang
ACS applied materials & interfaces 5 (24), 13405-13411, 2013
992013
Aminothiazole-derived N, S, Fe-doped graphene nanosheets as high performance electrocatalysts for oxygen reduction
C Chen, XD Yang, ZY Zhou, YJ Lai, M Rauf, Y Wang, J Pan, L Zhuang, ...
Chemical communications 51 (96), 17092-17095, 2015
912015
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–20