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Redox flow desalination based on the temperature difference as a driving force Journal article
Dai,Jinhong, Huang,Mingzhi, Hui,Kwan San, Yu,Denis Y.W., Yan,Dongliang, Hui,Kwun Nam, Tan,Swee Ching, Zhang,Liguo, Chen,Fuming. Redox flow desalination based on the temperature difference as a driving force[J]. Chemical Engineering Journal, 2021, 416, 127716.
Authors:  Dai,Jinhong;  Huang,Mingzhi;  Hui,Kwan San;  Yu,Denis Y.W.;  Yan,Dongliang; et al.
Favorite | TC[WOS]:17 TC[Scopus]:18  IF:13.3/13.2 | Submit date:2022/08/25
Redox Flow Desalination  Electrochemical Desalination  Water Treatment  Energy Consumption  Thermo Drive  
Redox flow desalination based on the temperature difference as a driving force Journal article
Dai,Jinhong, Huang,Mingzhi, Hui,Kwan San, Yu,Denis Y.W., Yan,Dongliang, Hui,Kwun Nam, Tan,Swee Ching, Zhang,Liguo, Chen,Fuming. Redox flow desalination based on the temperature difference as a driving force[J]. Chemical Engineering Journal, 2021, 416, 127716.
Authors:  Dai,Jinhong;  Huang,Mingzhi;  Hui,Kwan San;  Yu,Denis Y.W.;  Yan,Dongliang; et al.
Favorite | TC[WOS]:17 TC[Scopus]:18  IF:13.3/13.2 | Submit date:2021/03/11
Electrochemical Desalination  Energy Consumption  Redox Flow Desalination  Thermo Drive  Water Treatment  
Low energy consumption flow capacitive deionization with a combination of redox couples and carbon slurry Journal article
Wei,Qiang, Hu,Yudi, Wang,Jian, Ru,Qiang, Hou,Xianhua, Zhao,Lingzhi, Yu,Denis Y.W., San Hui,Kwan, Yan,Dongliang, Hui,Kwun Nam, Chen,Fuming. Low energy consumption flow capacitive deionization with a combination of redox couples and carbon slurry[J]. Carbon, 2020, 170, 487-492.
Authors:  Wei,Qiang;  Hu,Yudi;  Wang,Jian;  Ru,Qiang;  Hou,Xianhua; et al.
Favorite | TC[WOS]:38 TC[Scopus]:41  IF:10.5/9.2 | Submit date:2021/03/11
Activated Carbon/carbon Black  Electrochemical Desalination  Flow-electrode Capacitive Deionization  Redox Desalination  
Erratum to: Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition) (Autophagy, 12, 1, 1-222, 10.1080/15548627.2015.1100356 Other
2016-01-01
Authors:  Klionsky, Daniel J.;  Abdelmohsen, Kotb;  Abe, Akihisa;  Abedin, Md Joynal;  Abeliovich, Hagai; et al.
Favorite | TC[WOS]:407 TC[Scopus]:24 | Submit date:2022/07/20
Relaxation effect of a novel Danshensu/tetramethylpyrazine derivative on rat mesenteric arteries Journal article
Rachel Wai-Sum Li, C. Yang, Luchen Shan, Zaijun Zhang, Yuqiang Wang, Y.W. Kwan, Simon M.Y. Lee, Maggie P.M. Hoi, S.W. Chan, Alex Chun Cheung, K.H. Cheung, George P.H. Leung. Relaxation effect of a novel Danshensu/tetramethylpyrazine derivative on rat mesenteric arteries[J]. European Journal of Pharmacology, 2015, 761, 153-160.
Authors:  Rachel Wai-Sum Li;  C. Yang;  Luchen Shan;  Zaijun Zhang;  Yuqiang Wang; et al.
Favorite | TC[WOS]:17 TC[Scopus]:16  IF:4.2/4.3 | Submit date:2018/11/06
Calcium Channel  Danshensu Tetramethylpyrazine  Mesenteric Artery  Relaxation  
Enzyme kinetic and molecular docking studies for the inhibitions of miltirone on major human cytochrome P450 isozymes Journal article
Zhou X., Wang Y., Hu T., Or P.M.Y., Wong J., Kwan Y.W., Wan D.C.C., Hoi P.M., Lai P.B.S., Yeung J.H.K.. Enzyme kinetic and molecular docking studies for the inhibitions of miltirone on major human cytochrome P450 isozymes[J]. Phytomedicine, 2013, 20(3-4), 367-374.
Authors:  Zhou X.;  Wang Y.;  Hu T.;  Or P.M.Y.;  Wong J.; et al.
Favorite | TC[WOS]:42 TC[Scopus]:47  IF:6.7/6.2 | Submit date:2018/10/30
Cytochrome P450  Miltirone  Molecular Docking  Probe Substrates  Salvia Miltiorrhiza  
Effects of Radix Astragali and Radix Rehmanniae, the components of an anti-diabetic foot ulcer herbal formula, on metabolism of model CYP1A2, CYP2C9, CYP2D6, CYP2E1 and CYP3A4 probe substrates in pooled human liver microsomes and specific CYP isoforms Journal article
Or P.M.Y., Lam F.F.Y., Kwan Y.W., Cho C.H., Lau C.P., Yu H., Lin G., Lau C.B.S., Fung K.P., Leung P.C., Yeung J.H.K.. Effects of Radix Astragali and Radix Rehmanniae, the components of an anti-diabetic foot ulcer herbal formula, on metabolism of model CYP1A2, CYP2C9, CYP2D6, CYP2E1 and CYP3A4 probe substrates in pooled human liver microsomes and specific CYP isoforms[J]. Phytomedicine, 2012, 19(6), 535-544.
Authors:  Or P.M.Y.;  Lam F.F.Y.;  Kwan Y.W.;  Cho C.H.;  Lau C.P.; et al.
Favorite | TC[WOS]:35 TC[Scopus]:38 | Submit date:2019/01/17
Cyp1a2  Cyp2c9  Cyp2d6  Cyp2e1  Cyp3a4  Human Liver Microsomes  Radix Astragali  Radix Rehmanniae  
Novel hypoglycemic effects of Ganoderma lucidum water-extract in obese/diabetic (+db/+db) mice Journal article
S.W. Seto, T.Y. Lam, H.L. Tam, A.L.S. Au, S.W. Chan, J.H. Wu, P.H.F. Yu, G.P.H. Leung, S.M. Ngai, J.H.K. Yeung, P.S. Leung, S.M.Y. Lee, Y.W. Kwan. Novel hypoglycemic effects of Ganoderma lucidum water-extract in obese/diabetic (+db/+db) mice[J]. PHYTOMEDICINE, 2009, 16(5), 426-436.
Authors:  S.W. Seto;  T.Y. Lam;  H.L. Tam;  A.L.S. Au;  S.W. Chan; et al.
Favorite | TC[WOS]:95 TC[Scopus]:123  IF:6.7/6.2 | Submit date:2020/05/07
Type 2 Diabetes Mellitus  Ganoderma Lucidum  Pepck  Hmg Coa Reductase  
Modulation by simvastatin of iberiotoxin-sensitive, Ca 2+- activated K + channels of porcine coronary artery smooth muscle cells Journal article
Seto S.W., Au A.L.S., Lam T.Y., Chim S.S.C., Lee S.M.Y., Wan S., Tjiu D.C.S., Shigemura N., Yim A.P.C., Chan S.W., Tsui S.K.W., Leung G.P.H., Kwan Y.W.. Modulation by simvastatin of iberiotoxin-sensitive, Ca 2+- activated K + channels of porcine coronary artery smooth muscle cells[J]. British Journal of Pharmacology, 2007, 151(7), 987-997.
Authors:  Seto S.W.;  Au A.L.S.;  Lam T.Y.;  Chim S.S.C.;  Lee S.M.Y.; et al.
Favorite | TC[WOS]:24 TC[Scopus]:25 | Submit date:2018/11/06
Bk Ca Channels  Coronary Artery  Hmg Coa Reductase  Simvastatin