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Panel quantile GARCH models under homogeneity
Journal article
Zhu, Q., Li, W., Zhang, W., Li, G.. Panel quantile GARCH models under homogeneity[J]. Under R&R for Journal of Business & Economic Statistics., 2025.
Authors:
Zhu, Q.
;
Li, W.
;
Zhang, W.
;
Li, G.
Favorite
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Submit date:2024/08/05
Effect of heat input on microstructure and mechanical properties of AA6061 alloys fabricated by additive friction stir deposition
Journal article
Qiao, Q., Tang, C. I., Lam, W. I., Pu, J., Shi, H., Qian, H., Li, Z., Guo, D., Zhang, D., Kwok, C. T., Tam, L. M.. Effect of heat input on microstructure and mechanical properties of AA6061 alloys fabricated by additive friction stir deposition[J]. Journal of Materials Research and Technology, 2024, 33, 6182-6195.
Authors:
Qiao, Q.
;
Tang, C. I.
;
Lam, W. I.
;
Pu, J.
;
Shi, H.
; et al.
Favorite
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TC[WOS]:
0
TC[Scopus]:
0
IF:
6.2
/
6.3
|
Submit date:2024/12/05
Additive Friction Stir Deposition
Aa6061
Heat Input
Microstructure
Mechanical Properties
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
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TC[WOS]:
2
TC[Scopus]:
2
IF:
6.1
/
6.2
|
Submit date:2024/06/05
Additive Friction Stir Deposition (Afsd)
In-situ Monitoring
Rotation Speed
Microstructure
Mechanical Properties
In-situ monitoring of additive friction stir deposition of AA6061: Effect of layer thickness on the microstructure and mechanical properties
Journal article
Qiao, Q., Zhou, M., Gong, X., Jiang, S., Lin, Y., Wang, H., Lam, W. I., Qian, H., Guo, D., Zhang, D., Kwok, C. T., Li, X., Tam, L. M.. In-situ monitoring of additive friction stir deposition of AA6061: Effect of layer thickness on the microstructure and mechanical properties[J]. Additive Manufacturing, 2024, 84, 104141.
Authors:
Qiao, Q.
;
Zhou, M.
;
Gong, X.
;
Jiang, S.
;
Lin, Y.
; et al.
Favorite
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TC[WOS]:
8
TC[Scopus]:
9
IF:
10.3
/
12.4
|
Submit date:2024/05/16
Additive Friction Stir Deposition (Afsd)
In-situ Monitoring
Mechanical Properties
Microstructure
Texture
Characterization of laser surface-alloyed Ti-Ni-Ag coatings and evaluation of their corrosion and antibacterial performance
Journal article
Qiao, Q., Cristino, V. A.M., Tam, L. M., Chang, W. W., Qian, H. C., Zhang, D. W., Kwok, C. T.. Characterization of laser surface-alloyed Ti-Ni-Ag coatings and evaluation of their corrosion and antibacterial performance[J]. Surface and Coatings Technology, 2023, 474, 130119.
Authors:
Qiao, Q.
;
Cristino, V. A.M.
;
Tam, L. M.
;
Chang, W. W.
;
Qian, H. C.
; et al.
Adobe PDF
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Favorite
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TC[WOS]:
5
TC[Scopus]:
5
IF:
5.3
/
4.9
|
Submit date:2024/01/02
Antibacterial Efficacy
Corrosion
Hardness
Laser Surface Alloying
Ti-ni-ag Coatings
Tini Substrate
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
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TC[WOS]:
9
TC[Scopus]:
9
IF:
4.3
/
5.1
|
Submit date:2022/08/29
Cisolatin
Mesoporous Silica Nanoparticles
Glutathione Depletion
Biomimetic Nanocarrier
Degradation
Anisotropic large magnetoresistance and Fermi surface topology of terbium monoantimonide
Journal article
F. Tang, X. Shen, J. Zhou, S. Cong, L. Zhang, W. Zhou, Z. D. Han, B. Qian, X. F. Jiang, R. K. Zheng, W. Zhao, X. C. Kan, J. Tang, Y. Y. Han, X. Q. Yin, Y. Fang, S. Ju. Anisotropic large magnetoresistance and Fermi surface topology of terbium monoantimonide[J]. Materials Today Physics, 2022, 24, 100657.
Authors:
F. Tang
;
X. Shen
;
J. Zhou
;
S. Cong
;
L. Zhang
; et al.
Favorite
|
TC[WOS]:
5
TC[Scopus]:
6
IF:
10.0
/
9.8
|
Submit date:2022/05/13
Angular Magnetoresistance
Antiferromagnetic
Magnetic Anisotropy
Magnetoresistance
Phototheranostic Metal-Phenolic Networks with Antiexosomal PD-L1 Enhanced Ferroptosis for Synergistic Immunotherapy
Journal article
Xie, L., Li, J., Wang, G., Sang, W., Xu, M., Li, W., Yan, J., Li, B., Zhang, Z., Zhao, Q., Yuan, Z., Fan, Q., Dai, Y.. Phototheranostic Metal-Phenolic Networks with Antiexosomal PD-L1 Enhanced Ferroptosis for Synergistic Immunotherapy[J]. Journal of the American Chemical Society, 2022, 787-797.
Authors:
Xie, L.
;
Li, J.
;
Wang, G.
;
Sang, W.
;
Xu, M.
; et al.
Favorite
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IF:
14.4
/
14.8
|
Submit date:2023/08/08
Metal-Phenolic Networks
Ferroptosis
Immunotherapy
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
NIR-II-absorbing conjugated polymer-based theranostic agent for NIR-II fluorescence imaging-guided photothermal therapy acting synergistically with tumor microenvironment-responsive nitric oxide therapy
Journal article
Li, J., Xie, L., Sang, W., Li, W., Wang, G., Tian, H., Zhang, Z., Liu, J., Fan, Q., Dai, Y.. NIR-II-absorbing conjugated polymer-based theranostic agent for NIR-II fluorescence imaging-guided photothermal therapy acting synergistically with tumor microenvironment-responsive nitric oxide therapy[J]. ChemPhysMater, 2021, 51-55.
Authors:
Li, J.
;
Xie, L.
;
Sang, W.
;
Li, W.
;
Wang, G.
; et al.
Favorite
|
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Submit date:2023/08/08
Conjugated polymer
NIR-II fluorescence
Photothermal therapy
Tumor environment response
Nitric oxide therapy