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A Peer-to-Peer File Storage and Sharing System Based on Consortium Blockchain
Journal article
Peng, S., Bao, W., Liu, H., Xiao, X., Shang, J., Han, L., Wang, S., Xie, X., Xu, Y. A Peer-to-Peer File Storage and Sharing System Based on Consortium Blockchain[J]. Future Generation Computer Systems, 2023, 141, 197-204.
Authors:
Peng, S.
;
Bao, W.
;
Liu, H.
;
Xiao, X.
;
Shang, J.
; et al.
Favorite
|
TC[WOS]:
12
TC[Scopus]:
19
IF:
6.2
/
5.9
|
Submit date:2023/05/02
Consortium Blockchain
Data Sharing
Peer-to-peer File System
An Ion‐Conductive Grafted Polymeric Binder with Practical Loading for Silicon Anode with High Interfacial Stability in Lithium‐Ion Batteries
Journal article
Lin, Z., Wu, G., Yang, Y., Wan, Z., Zeng, X., Yan, L., Wu, S.X., Ling, M., Liang, C., Xu GN(許冠南), Lin, Z.. An Ion‐Conductive Grafted Polymeric Binder with Practical Loading for Silicon Anode with High Interfacial Stability in Lithium‐Ion Batteries[J]. Advanced Energy Materials, 2022, 12(29), 2201197.
Authors:
Lin, Z.
;
Wu, G.
;
Yang, Y.
;
Wan, Z.
;
Zeng, X.
; et al.
Favorite
|
TC[WOS]:
105
TC[Scopus]:
109
IF:
24.4
/
27.2
|
Submit date:2023/02/07
Ah-level Pouch Cells
Lean Binder Content
Lithium-ion Batteries
Silicon Nanoparticle Anodes
Stress Distribution Binders
Cobalt phosphosulfide nanoparticles encapsulated into heteroatom-doped carbon as bifunctional electrocatalyst for Zn− air battery
Journal article
Xu, X., Wang, S., Guo, S., Hui, K.S., Ma, J., Dinh, D.A., Hui, Kwun Nam, Wang, H., Zhang, L., Zhou, G.. Cobalt phosphosulfide nanoparticles encapsulated into heteroatom-doped carbon as bifunctional electrocatalyst for Zn− air battery[J]. Advanced Powder Materials, 2022, 1, 100027.
Authors:
Xu, X.
;
Wang, S.
;
Guo, S.
;
Hui, K.S.
;
Ma, J.
; et al.
Favorite
|
TC[WOS]:
92
TC[Scopus]:
103
IF:
28.6
/
28.6
|
Submit date:2022/08/23
Bifunctional Electrocatalyst Zeolitic Imidazolate Framework Heteroatom Doping Zn–air Battery
Changes in target ability of nanoparticles due to protein corona composition and disease state
Journal article
Xu, W., Xu, M., Xiao, Y., Yu, L., Xie, H., Jiang, X., Chen, M., Gao, H., Wang, L.. Changes in target ability of nanoparticles due to protein corona composition and disease state[J]. Asian Journal of Pharmaceutical Sciences, 2022, N-N.
Authors:
Xu, W.
;
Xu, M.
;
Xiao, Y.
;
Yu, L.
;
Xie, H.
; et al.
Favorite
|
IF:
10.7
/
9.0
|
Submit date:2022/08/29
Protein corona
Diabetes mellitus
Comorbidity
Targeting capability
Controlled growth of ultrathin ferromagnetic β-MnSe semiconductor
Journal article
J. Zou, Y. Yang, D. Hu, L. Kang, C. Zhu, D. Tian, X. Lv, G. Kutty, Y. Guo, M. Xu, F. Li, Guo Hong, Z. Liu. Controlled growth of ultrathin ferromagnetic β-MnSe semiconductor[J]. SmartMat, 2022.
Authors:
J. Zou
;
Y. Yang
;
D. Hu
;
L. Kang
;
C. Zhu
; et al.
Favorite
|
IF:
15.3
/
15.8
|
Submit date:2022/08/22
Solution‑Processed Transparent Conducting Electrodes for Flexible Organic Solar Cells with 16.61% Efficiency
Journal article
Man, J.Y., Xia, Y.G., Fang, J.F., Zhang, Z.G., Xu, B.G., Wang, J.H., Ai, L., Song, W.J., Hui, K.N., Fan, X., Li, Y.F.. Solution‑Processed Transparent Conducting Electrodes for Flexible Organic Solar Cells with 16.61% Efficiency[J]. Nano-micro letters, 2021, 13(1), 1.
Authors:
Man, J.Y.
;
Xia, Y.G.
;
Fang, J.F.
;
Zhang, Z.G.
;
Xu, B.G.
; et al.
Favorite
|
TC[WOS]:
94
TC[Scopus]:
97
IF:
31.6
/
26.0
|
Submit date:2022/08/24
Nonfullerene Organic Solar Cells, Flexible, Thermal Stability
‘Be water’ strategy of liquid lithium sulfide enables 0.2 V potential barrier for high-performance lithium–sulfur batteries
Journal article
Zhao, Y., Zhang, Z., Wu, R., Lyu, C., Zhao, X., Xu, H., Xiang, J., Zha, C., Ouyang, G., Wang, L.. ‘Be water’ strategy of liquid lithium sulfide enables 0.2 V potential barrier for high-performance lithium–sulfur batteries[J]. Materials Today Energy, 2021, 21, 100793.
Authors:
Zhao, Y.
;
Zhang, Z.
;
Wu, R.
;
Lyu, C.
;
Zhao, X.
; et al.
Favorite
|
TC[WOS]:
13
TC[Scopus]:
15
IF:
9.0
/
8.4
|
Submit date:2021/12/08
Cosolvent Strategy
Electrical Conductivity
Interface Catalysis
P-orbital Of Boron
Vanadium Diboride
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
Controllable growth of type-II Dirac semimetal PtTe2 atomic layer on Au substrate for sensitive room temperature terahertz photodetection
Journal article
Yang, Y., Zhang, K., Zhang, L., Hong, G., Chen, C., Jing, H., Lu, J., Wang, P., Chen, X., Wang, L., Xu, H.. Controllable growth of type-II Dirac semimetal PtTe2 atomic layer on Au substrate for sensitive room temperature terahertz photodetection[J]. InfoMat, 2021, 3(6), 705-715.
Authors:
Yang, Y.
;
Zhang, K.
;
Zhang, L.
;
Hong, G.
;
Chen, C.
; et al.
Favorite
|
TC[WOS]:
45
TC[Scopus]:
46
IF:
22.7
/
21.7
|
Submit date:2022/08/22
2d Materials
Chemical Vapor Deposition
Dirac Semimetal
Platinum Telluride
Terahertz Photodetection
Insights on the Working Principles of Secondary Electrospray Ionization High-Resolution Mass Spectrometry for Quantitative Analysis of Aerosol Chemical Composition
Journal article
Xu, X., Zeng, J.F., Jin, D.D., Huang, Z.X., Li, L., Wexler, A.S., Chan, M.N., Zhou, Z., Li, Y.J., Li, X.. Insights on the Working Principles of Secondary Electrospray Ionization High-Resolution Mass Spectrometry for Quantitative Analysis of Aerosol Chemical Composition[J]. Aerosol Science and Engineering, 2021, 5(2), 147-155.
Authors:
Xu, X.
;
Zeng, J.F.
;
Jin, D.D.
;
Huang, Z.X.
;
Li, L.
; et al.
Favorite
|
TC[WOS]:
3
TC[Scopus]:
3
IF:
1.6
/
1.6
|
Submit date:2022/07/26
High-resolution Mass Spectrometry
Ion Transport Capillary
Normalized Collision Energy
Particulate Organic Matter
Secondary Nanoelectrospray Ionization