合作者(402)TOP 5
  • Chen,Chen
  • Li,Yadong
  • Wang,Dingsheng
  • Peng,Qing
  • Liu,Shoujie
關 鍵 字
發文可能採用名字
  • 张永臻
  • 張永臻
  • Cheong, Weng-Chon
  • Cheong, WC
  • Cheong Weng-Chon (Max)
  • Cheong, Weng-Chon Max
  • Cheong Weng-Chon
  • Cheong, Weng-Chon (Max)
  • Cheong, Weng Chon Max
  • Cheong, Weng-Chon (max)
  • Cheong, Weng-chon

張永臻

材料科學與工程系

ORCID: 0000-0002-7684-2808

ResearcherID:

成果: 93 件 | 合作者:402 

WOS核心合集引用:15302 | H Index:50 | WOS收錄:90

CNKI收錄:7 | SCOPUS收錄:89

論文: 93

論文: 93 篇 上傳 編輯 糾錯 可能是張永臻的文章 匯出

1.利用中心原子价层轨道阐释软硬酸碱理论的原理与应用

杨雪梅,王志鹏,张永臻,马新雨,Chen     More...

化学教育(中英文)[1003-3807], Published 2024, Issue 6, Pages 99-107

收錄情况: CNKI

2.Effect of crystal facets in plasmonic catalysis

Kang, YC, Joao, SM,     More...

NATURE COMMUNICATIONS[2041-1723], Published 2024, Volume 15, Issue 1,

收錄情况: WOS SCOPUS

WOS核心合集引用: 2  2023影響因子:  14.7 

3.Self-standing Z-scheme structured heterogeneous nanosheet arrays of ZnIn2S4/cobalt porphyrin sulfonate for bifunctional photocatalytic carbon dioxide reduction and antibacterial

Li, Shuming, Li, Xue     More...

Chemical Engineering Journal[1385-8947], Published 2024, Volume 499,

收錄情况: WOS SCOPUS

WOS核心合集引用: 1  2023影響因子:  13.4 

4.Topological defect and sp3/sp2 carbon interface derived from ZIF-8 with linker vacancies for oxygen reduction reaction

Gao, HX, Wang, S, Ch     More...

CARBON[0008-6223], Published 2023, Volume 203, Pages 76-87

收錄情况: WOS SCOPUS

WOS核心合集引用: 20  2023影響因子:  10.5  发表年影響因子:  10.5 

5.Molybdenum atomic sites embedded 1D carbon nitride nanotubes as highly efficient bifunctional photocatalyst for tetracycline degradation and hydrogen evolution

Mateen, M, Cheong, W     More...

CHEMICAL ENGINEERING JOURNAL[1385-8947], Published 2023, Volume 451,

收錄情况: WOS SCOPUS

WOS核心合集引用: 26  2023影響因子:  13.4  发表年影響因子:  13.4 

6.Engineering Molecular Heterostructured Catalyst for Oxygen Reduction Reaction

Chen, C, Li, YF, Hua     More...

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[0002-7863], Published 2023, Volume 145, Issue 39, Pages 21273-21283

收錄情况: WOS SCOPUS

WOS核心合集引用: 24  2023影響因子:  14.5  发表年影響因子:  14.5 

7.Optimization of p-Type Cu2O Nanocube Photocatalysts Based on Electronic Effects

Lin, R, Chen, HW, Cu     More...

ACS CATALYSIS[2155-5435], Published 2023, Volume 13, Issue 17, Pages 11352-11361

收錄情况: WOS SCOPUS

WOS核心合集引用: 8  2023影響因子:  11.7  发表年影響因子:  11.7 

8.Oxalate-Assisted Synthesis of Hollow Carbon Nanocage With Fe Single Atoms for Electrochemical CO2 Reduction

Yu, K, Sun, KA, Cheo     More...

SMALL[1613-6810], Published 2023, Volume 19, Issue 39,

收錄情况: WOS SCOPUS

WOS核心合集引用: 12  2023影響因子:  13.0  发表年影響因子:  13.0 

9.Atomic-level engineering Fe1N2O2 interfacial structure derived from oxygen-abundant metal-organic frameworks to promote electrochemical CO2 reduction

Zhao, D, Yu, K, Song     More...

ENERGY & ENVIRONMENTAL SCIENCE[1754-5692], Published 2022, Volume 15, Issue 9, Pages 3795-3804

收錄情况: WOS SCOPUS

WOS核心合集引用: 54  2023影響因子:  32.4  发表年影響因子:  32.5 

10.Engineering electrophilic atomic Ir sites on CeO2 colloidal spheres for selectivity control in hydrogenation of alpha,beta-unsaturated carbonyl compounds

Mateen, M, Akhtar, M     More...

NANO RESEARCH[1998-0124], Published 2022, Volume 15, Issue 8, Pages 7107-7115

收錄情况: WOS SCOPUS

WOS核心合集引用: 9  2023影響因子:  9.6  发表年影響因子:  9.9 

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