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Kam Loon Fow
Kam Loon Fow
Assistant Professor (Chemical Engineering), The University of Nottingham Ningbo China
Verified email at nottingham.edu.cn
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Cited by
Cited by
Year
Synthesis and applications of MOF-derived porous nanostructures
MH Yap, KL Fow, GZ Chen
Green Energy & Environment 2 (3), 218-245, 2017
3712017
Dynamic Kinetic Resolution of Secondary Alcohols Combining Enzyme‐Catalyzed Transesterification and Zeolite‐Catalyzed Racemization
Y Zhu, KL Fow, GK Chuah, S Jaenicke
Chemistry–A European Journal 13 (2), 541-547, 2007
762007
Enhanced enantioselectivity of chiral hydrogenation catalysts after immobilisation in thin films of ionic liquid
KL Fow, S Jaenicke, TE Müller, C Sievers
Journal of Molecular Catalysis A: Chemical 279 (2), 239-247, 2008
482008
Highly active gauze-supported skeletal nickel catalysts
KL Fow, M Ganapathi, I Stassen, J Fransaer, K Binnemans, DE De Vos
Chemical communications 49 (76), 8498-8500, 2013
122013
Enhanced Asymmetric Reduction of Ethyl 3‐Oxobutyrate by Baker's Yeast via Substrate Feeding and Enzyme Inhibition
KL Fow, LCH Poon, ST Sim, GK Chuah, S Jaenicke
Engineering in Life Sciences 8 (4), 372-380, 2008
122008
Dual‐functional ZnO/LiF layer protected lithium metal for stable Li10GeP2S12‐based all‐solid‐state lithium batteries
X Chang, G Liu, M Wu, M Chang, X Zhao, GZ Chen, KL Fow, X Yao
Battery Energy 2 (3), 20220051, 2023
102023
Catalytically active gauze-supported skeletal nickel prepared from Ni–Zn alloys electrodeposited from an acetamide–dimethyl sulfone eutectic mixture
KL Fow, M Ganapathi, I Stassen, K Binnemans, J Fransaer, DE De Vos
Catalysis Today 246, 191-197, 2015
82015
Synthesis and applications of MOF-derived porous nanostructures, Green Energy Environ. 2 (2017) 218–245
MH Yap, KL Fow, GZ Chen
8
LiAlO2-Modified Li Negative Electrode with Li10GeP2S12 Electrolytes for Stable All-Solid-State Lithium Batteries
X Chang, W Weng, M Li, M Wu, GZ Chen, KL Fow, X Yao
ACS Applied Materials & Interfaces 15 (17), 21179-21186, 2023
72023
Synergistic engineering of heteronuclear Ni-Ag dual-atom catalysts for high-efficiency CO2 electroreduction with nearly 100% CO selectivity
Z Guo, H Zhu, G Yang, A Wu, Q Chen, Z Yan, KL Fow, H Do, JD Hirst, ...
Chemical Engineering Journal 476, 146556, 2023
32023
Dynamic kinetic resolution combining enzyme and zeolite catalysis
S Jaenicke, GK Chuah, KL Fow
Studies in surface science and catalysis 172, 313-316, 2007
22007
Photophysical and electrochemical properties of [Re (CO) 3Cl (NN)](NN= dppp3, dppp2, dppp2Br) complexes functionalised with pendant pyridyl ligands
PA Summers, BS Adams, N Ibrahim, KEA Reynolds, KL Fow, ES Davies, ...
Vibrational Spectroscopy 100, 86-92, 2019
12019
Dynamic kinetic resolution for the synthesis of esters, amides and acids using lipases
KL Fow, Y Zhu, GK Chuah, S Jaenicke, S Van Nispen, J Van Buijtenen, ...
Practical Methods for Biocatalysis and Biotransformations, 133, 2009
12009
Electrocatalytic CO2 reduction to C2H4: From lab to fab
Z Guo, F Yang, X Li, H Zhu, H Do, KL Fow, JD Hirst, T Wu, Q Ye, Y Peng, ...
Journal of Energy Chemistry, 2023
2023
Zheng (2017) Synthesis and applications of MOF-derived porous nanostructures. Green Energy & Environment, 2 (3). pp. 218-245. ISSN 2468-0257
MH Yap, KL Fow, G Chen
2017
Department of Chemistry, National University of Singapore, Kent Ridge, Singapore 119260, Republic of Singapore
S JAENICKE, GK CHUAH, KL FOW
Science and Technology in Catalysis: 5th Tokyo Conference on Advanced …, 2007
2007
LiAlO2 Modified Lithium Metal for Li10GeP2S12-Based All-Solid-State Lithium Batteries
X Chang, W Weng, M Li, GZ Chen, KL Fow, X Yao
Conversion of High Moisture Biomass to Hierarchical Porous Carbon Via Molten Base Carbonisation and Activation for Electrochemical Double Layer Capacitor
IL Egun, B Akinwolemiwa, B Yin, H Tian, H He, KL Fow, H Zhang, ...
Available at SSRN 4692763, 0
Wet Biomass to Hierarchical Porous Carbon Via Molten Base Carbonisation and Activation for Electrochemical Double Layer Capacitor
D Hu, IL Egun, B Akinwolemiwa, B Yin, H Tian, H He, KL Fow, H Zhang, ...
Available at SSRN 4623633, 0
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