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Suppressing Strong Exciton–Phonon Coupling in Blue Perovskite Nanoplatelet Solids by Binary Systems Journal article
Angewandte Chemie - International Edition, 2020,Volume: 59,Issue: 49,Page: 22156-22162
Authors:  Peng,Shaomin;  Wei,Qi;  Wang,Bingzhe;  Zhang,Zhipeng;  Yang,Hongcheng;  Pang,Guotao;  Wang,Kai;  Xing,Guichuan;  Sun,Xiao Wei;  Tang,Zikang
Favorite |  | TC[WOS]:3 TC[Scopus]:3 | Submit date:2021/03/11
binary systems  blue-emissive perovskite nanoplatelets  CsPbBr3  energy transfer  exciton-phonon coupling  
A semi-interpenetrating network ionic composite hydrogel with low modulus, fast self-recoverability and high conductivity as flexible sensor Journal article
Carbohydrate Polymers, 2020,Volume: 248
Authors:  Ding,Hongyao;  Liang,Xiaoxu;  Wang,Qiao;  Wang,Miaomiao;  Li,Zongjin;  Sun,Guoxing
Favorite |  | TC[WOS]:3 TC[Scopus]:4 | Submit date:2021/03/09
Hydrogen bond  Ionic conductivity  Self-recovery  Semi-interpenetrating network  Strain sensor  Tough hydrogel  
Ultra-lightweight cement composites with excellent flexural strength, thermal insulation and water resistance achieved by establishing interpenetrating network Journal article
Construction and Building Materials, 2020,Volume: 250
Authors:  Liu,Qing;  Liu,Wenjie;  Li,Zongjin;  Guo,Siyao;  Sun,Guoxing
Favorite |  | TC[WOS]:2 TC[Scopus]:2 | Submit date:2021/03/09
Flexural strength  In-situ polymerization  Interaction  PAM  Water absorption  
Net section resistance of bolted S690 steel angles subjected to tension Journal article
Thin-Walled Structures, 2020,Volume: 151
Authors:  Yam,Michael CH;  Ke,Ke;  Jiang,Binhui;  Lam,Angus CC
Favorite |  | TC[WOS]:2 TC[Scopus]:2 | Submit date:2021/03/11
Design method  Experiment  Finite element model  High strength steel  Net section resistance  Shear lag  
Cavitation Erosion Damage Mechanism of a Duplex Stainless Steel Having a Ferrite-Austenite-Sigma-Phase Triplex Microstructure Journal article
Journal of Materials Engineering and Performance, 2020,Volume: 29,Issue: 5,Page: 2806-2815
Authors:  Ai,Wenji;  Lo,K. H.;  Li,Xiang;  Kwok,C. T.;  Pan,Hui
Favorite |  | TC[WOS]:0 TC[Scopus]:0 | Submit date:2021/03/09
austenite  cavitation erosion  duplex stainless steel  ferrite  sigma phase  
Effect of curing environment on the tensile behaviour of FRCM composites Journal article
Construction and Building Materials, 2020,Volume: 238
Authors:  Wang,Xuan;  Lam,Chi Chiu;  Sun,Bo Chao;  Noguchi,Takafumi;  Iu,Vai Pan
Favorite |  | TC[WOS]:7 TC[Scopus]:7 | Submit date:2021/03/09
Analysis modelling  Fabric-reinforced cementitious matrix (FRCM)  Material characterization  Temperature and humidity  Tensile test  
High strength (~2000 MPa) or highly ductile (~11%) additively manufactured H13 by tempering at different conditions Journal article
Materials Science and Engineering A, 2020,Volume: 773
Authors:  Yan,Jujie;  Song,Hui;  Dong,Yangping;  Quach,Wai Meng;  Yan,Ming
Favorite |  | TC[WOS]:2 TC[Scopus]:2 | Submit date:2021/03/11
H13 steel  Mechanical properties  Microstructure  Selective laser melting  Tempering  
Low-magnitude high-frequency vibration decreases body weight gain and increases muscle strength by enhancing the p38 and ampk pathways in db/db mice Journal article
Diabetes, Metabolic Syndrome and Obesity: Targets and Therapy, 2020,Volume: 13,Page: 979-989
Authors:  Ren,Zhitao;  Lan,Qingping;  Chen,Yan;  Chan,Yuet Wa Judy;  Mahady,Gail B.;  Lee,Simon Ming Yuen
Favorite |  | TC[WOS]:0 TC[Scopus]:0 | Submit date:2021/03/01
AMPKα  Low-magnitude high-frequency vibration  Mitochondrial biogenesis  P38  Type 2 diabetes mellitus  
Mechanical properties and cross-sectional behavior of additively manufactured high strength steel tubular sections Journal article
Thin-Walled Structures, 2019,Volume: 144
Authors:  Yan,Ju Jie;  Chen,Man Tai;  Quach,Wai Meng;  Yan,Ming;  Young,Ben
Favorite |  | TC[WOS]:15 TC[Scopus]:18 | Submit date:2021/03/11
Additive manufacturing  Coupon tests  High strength steel  Stub columns  Tubular sections  
Comparison of different types of TRM composites for strengthening masonry panels Journal article
Construction and Building Materials, 2019,Volume: 219,Page: 184-194
Authors:  Wang,Xuan;  Lam,Chi Chiu;  Iu,Vai Pan
Favorite |  | TC[WOS]:17 TC[Scopus]:22 | Submit date:2021/03/09
Fabrics/textiles  Masonry  Mechanical testing  Textile reinforced mortars