UM

Browse/Search Results:  1-10 of 32 Help

Selected(0)Clear Items/Page:    Sort:
In-situ monitoring of additive friction stir deposition of AA6061: Effect of rotation speed on the microstructure and mechanical properties Journal article
Qiao, Q., Wang, L., Tam, C. W., Gong, X., Dong, X., Lin, Y., Lam, W. I., Qian, H., Guo, D., Zhang, D., Kwok, C. T., Tam, L. M.. In-situ monitoring of additive friction stir deposition of AA6061: Effect of rotation speed on the microstructure and mechanical properties[J]. Materials Science and Engineering: A, 2024, 902, 146620.
Authors:  Qiao, Q.;  Wang, L.;  Tam, C. W.;  Gong, X.;  Dong, X.; et al.
Favorite | TC[WOS]:2 TC[Scopus]:2  IF:6.1/6.2 | Submit date:2024/06/05
Additive Friction Stir Deposition (Afsd)  In-situ Monitoring  Mechanical Properties  Microstructure  Rotation Speed  
Biomimetic Redox-Responsive Mesoporous Organosilica Nanoparticles Enhance Cisplatin-based Chemotherapy Journal article
Chen, F., Zhang, F., Wang, Y., Peng, J., Cao, L., Mei, Q., Ge, M., Li, L., Chen, M., Dong, W., Chang, Z.. Biomimetic Redox-Responsive Mesoporous Organosilica Nanoparticles Enhance Cisplatin-based Chemotherapy[J]. Frontiers in Bioengineering and Biotechnology, 2022, 10, 860949-860949.
Authors:  Chen, F.;  Zhang, F.;  Wang, Y.;  Peng, J.;  Cao, L.; et al.
Favorite | TC[WOS]:7 TC[Scopus]:7  IF:4.3/5.1 | Submit date:2022/08/29
Cisolatin  Mesoporous Silica Nanoparticles  Glutathione Depletion  Biomimetic Nanocarrier  Degradation  
A light-driven dual-nanotransformer with deep tumor penetration for efficient chemo-immunotherapy Journal article
Peng, J., Chen, F., Liu, Y., Zhang, F., Cao, L., You, Q., Yang, D., Chang, Z., Ge, M., Li, L., Wang, Z., Mei, Q., Shao, D., Chen, M., Dong, W.. A light-driven dual-nanotransformer with deep tumor penetration for efficient chemo-immunotherapy[J]. Theranostics, 2022, 1756-1768.
Authors:  Peng, J.;  Chen, F.;  Liu, Y.;  Zhang, F.;  Cao, L.; et al.
Favorite |   IF:12.4/12.0 | Submit date:2022/08/29
phototherapy  light response  tumor penetration  mesoporous organosilica nanoparticles  immunotherapy  
Mito-Bomb: Targeting Mitochondria for Cancer Therapy Review article
2021
Authors:  Xiaolu Guo;  Naidi Yang;  Wenhui Ji;  Hang Zhang;  Xiao Dong; et al.
Favorite | TC[WOS]:270 TC[Scopus]:282  IF:27.4/30.2 | Submit date:2021/11/30
Cancer Therapy  Chemodynamic Therapy  Mitochondria  Photodynamic Therapy  Photothermal Therapy  
Phosphorescent Carbon-Nanodots-Assisted Förster Resonant Energy Transfer for Achieving Red Afterglow in an Aqueous Solution Journal article
Liang, Y.C., Cao, Q., Liu, K.K., Peng, X.Y., Sui, L.Z., Wang, S., Song, S.Y., Wu, X.Y., Zhao, W.B., Deng, Y., Lou, Q., Dong, L., Shan, C.X.. Phosphorescent Carbon-Nanodots-Assisted Förster Resonant Energy Transfer for Achieving Red Afterglow in an Aqueous Solution[J]. ACS Nano, 2021, 16242-16254.
Authors:  Liang, Y.C.;  Cao, Q.;  Liu, K.K.;  Peng, X.Y.;  Sui, L.Z.; et al.
Favorite |   IF:15.8/16.2 | Submit date:2022/08/31
carbon nanodots  phosphorescence  red afterglow  Förster resonant energy transfer  bioimaging  
A Magnetocatalytic Propelled Cobalt–Platinum@Graphene Navigator for Enhanced Tumor Penetration and Theranostics Journal article
Zhang, L., Dong, Q., Chen, L., Chen, Z., Tan, W.. A Magnetocatalytic Propelled Cobalt–Platinum@Graphene Navigator for Enhanced Tumor Penetration and Theranostics[J]. CCS Chemistry, 2021, 2382-2395.
Authors:  Zhang, L.;  Dong, Q.;  Chen, L.;  Chen, Z.;  Tan, W.
Favorite | TC[WOS]:16 TC[Scopus]:14 | Submit date:2022/07/27
Theranostics  
Hydrogen-Bonding-Induced H-Aggregation of Charge-Transfer Complexes for Ultra-Efficient Second Near-Infrared Region Photothermal Conversion Journal article
Jieqiong Xu, Yin, Z., Zhang, L., Dong, Q., Cai, X., Li, S., Chen, Q., Keoingthong, P., Li, Z., Chen, L., Chen, Z., Tan, W.. Hydrogen-Bonding-Induced H-Aggregation of Charge-Transfer Complexes for Ultra-Efficient Second Near-Infrared Region Photothermal Conversion[J]. CCS Chemistry, 2021, 4(7), 2288-2298.
Authors:  Jieqiong Xu;  Yin, Z.;  Zhang, L.;  Dong, Q.;  Cai, X.; et al.
Favorite | TC[WOS]:18 TC[Scopus]:16 | Submit date:2022/07/27
Photothermal Conversion  Nir-ii  Hydrogen Bonding  Charge Transfer  Aggregation  
Stable and Efficient Blue‐Emitting CsPbBr3 Nanoplatelets with Potassium Bromide Surface Passivation Journal article
Lin, H., Wei, Q., Ng, K. W., Dong, J.Y., Li, J.L., Liu, W.W, Yan, S.S., Chen, S., Xing, G.C., Tang, X.S., Tang, Z.K., Wang, S.P.. Stable and Efficient Blue‐Emitting CsPbBr3 Nanoplatelets with Potassium Bromide Surface Passivation[J]. Small, 2021, 1-10.
Authors:  Lin, H.;  Wei, Q.;  Ng, K. W.;  Dong, J.Y.;  Li, J.L.; et al.
Favorite | TC[WOS]:48 TC[Scopus]:53 | Submit date:2022/08/01
Metal-halide Perovskite  Stability  Nanoplatelets  Surface Passivation  
An improved method of handling missing values in the analysis of sample entropy for continuous monitoring of physiological signals Journal article
Dong X., Chen C., Geng Q., Cao Z., Chen X., Lin J., Jin Y., Zhang Z., Shi Y., Zhang X.D.. An improved method of handling missing values in the analysis of sample entropy for continuous monitoring of physiological signals[J]. Entropy, 2019, 21(3).
Authors:  Dong X.;  Chen C.;  Geng Q.;  Cao Z.;  Chen X.; et al.
Adobe PDF | Favorite | TC[WOS]:20 TC[Scopus]:20  IF:2.1/2.2 | Submit date:2021/03/03
Complexity  Medical Information  Missing Values  Physiological Data  Sample Entropy  
Reductive-Responsive Single Molecular Layer Polymer Nanocapsules Prepared by Lateral Functionalized Pillar[5]arenes for Targeting Anticancer Drug Delivery Journal article
Fu, S., Zhang, Y., Guan, S., Huang, Q., Wang, R., Tian, R., Zang, M., Qiao, S., Zhang, X., Liu, S., Fan, X., Li, X., Luo, Q., Hou, C., Xu, J., Dong, Z., Liu, J.. Reductive-Responsive Single Molecular Layer Polymer Nanocapsules Prepared by Lateral Functionalized Pillar[5]arenes for Targeting Anticancer Drug Delivery[J]. ACS Applied Materials & Interfaces, 2018, 14281-14286.
Authors:  Fu, S.;  Zhang, Y.;  Guan, S.;  Huang, Q.;  Wang, R.; et al.
Favorite | TC[WOS]:43 TC[Scopus]:42  IF:8.3/8.7 | Submit date:2022/07/29
Pillar[5]Arene  Drug Delivery