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期刊名字 | Catalysis Science & Technology CATAL SCI TECHNOL (此期刊被最新的JCR期刊SCIE收录) LetPub评分 8.0
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声誉 8.2 影响力 7.4 速度 8.2 | |||||||||||||||||||||
期刊ISSN | 2044-4753 | 微信扫码收藏此期刊 | ||||||||||||||||||||
E-ISSN | 2044-4761 | |||||||||||||||||||||
2023-2024最新影响因子 (数据来源于搜索引擎) | 4.4 点击查看影响因子趋势图 | |||||||||||||||||||||
实时影响因子 | 截止2024年10月29日:3.228 | |||||||||||||||||||||
2023-2024自引率 | 4.50%点击查看自引率趋势图 | |||||||||||||||||||||
五年影响因子 | 4.7 | |||||||||||||||||||||
JCI期刊引文指标 | 0.64 | |||||||||||||||||||||
h-index | 86 | |||||||||||||||||||||
CiteScore ( 2024年最新版) |
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期刊简介 |
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期刊官方网站 | http://pubs.rsc.org/en/Journals/JournalIssues/CY#!advancearticles | |||||||||||||||||||||
期刊投稿网址 | http://mc.manuscriptcentral.com/cy | |||||||||||||||||||||
期刊语言要求 | 经LetPub语言功底雄厚的美籍native English speaker精心编辑的稿件,不仅能满足Catalysis Science & Technology的语言要求,还能让Catalysis Science & Technology编辑和审稿人得到更好的审稿体验,让稿件最大限度地被Catalysis Science & Technology编辑和审稿人充分理解和公正评估。LetPub的专业SCI论文编辑服务(包括SCI论文英语润色,同行资深专家修改润色,SCI论文专业翻译,SCI论文格式排版,专业学术制图等)帮助作者准备稿件,已助力全球15万+作者顺利发表论文。部分发表范例可查看:服务好评 论文致谢(1篇) 。
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是否OA开放访问 | No | |||||||||||||||||||||
通讯方式 | THOMAS GRAHAM HOUSE, SCIENCE PARK, MILTON RD, CAMBRIDGE, ENGLAND, CAMBS, CB4 0WF | |||||||||||||||||||||
出版商 | Royal Society of Chemistry | |||||||||||||||||||||
涉及的研究方向 | CHEMISTRY, PHYSICAL- | |||||||||||||||||||||
出版国家或地区 | ENGLAND | |||||||||||||||||||||
出版语言 | English | |||||||||||||||||||||
出版周期 | ||||||||||||||||||||||
出版年份 | 0 | |||||||||||||||||||||
年文章数 | 600点击查看年文章数趋势图 | |||||||||||||||||||||
Gold OA文章占比 | 14.71% | |||||||||||||||||||||
研究类文章占比: 文章 ÷(文章 + 综述) | 93.50% | |||||||||||||||||||||
WOS期刊SCI分区 ( 2023-2024年最新版) | WOS分区等级:2区
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中国科学院《国际期刊预警 名单(试行)》名单 | 2024年02月发布的2024版:不在预警名单中 2023年01月发布的2023版:不在预警名单中 2021年12月发布的2021版:不在预警名单中 2020年12月发布的2020版:不在预警名单中 | |||||||||||||||||||||
中国科学院SCI期刊分区 ( 2023年12月最新升级版) | 点击查看中国科学院SCI期刊分区趋势图
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中国科学院SCI期刊分区 ( 2022年12月升级版) |
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中国科学院SCI期刊分区 ( 2021年12月旧的升级版) |
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SCI期刊收录coverage | Science Citation Index Expanded (SCIE) (2020年1月,原SCI撤销合并入SCIE,统称SCIE) Scopus (CiteScore) | |||||||||||||||||||||
PubMed Central (PMC)链接 | http://www.ncbi.nlm.nih.gov/nlmcatalog?term=2044-4753%5BISSN%5D | |||||||||||||||||||||
平均审稿速度 | 网友分享经验: 平均1.0个月 | |||||||||||||||||||||
平均录用比例 | 网友分享经验: | |||||||||||||||||||||
LetPub助力发表 | 经LetPub编辑的稿件平均录用比例是未经润色的稿件的1.5倍,平均审稿时间缩短40%。众多作者在使用LetPub的专业SCI论文编辑服务(包括SCI论文英语润色,同行资深专家修改润色,SCI论文专业翻译,SCI论文格式排版,专业学术制图等)后论文在Catalysis Science & Technology顺利发表。
快看看作者怎么说吧:服务好评 论文致谢 | |||||||||||||||||||||
期刊常用信息链接 |
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中国学者近期发表的论文 | |
1. | Mechanism of NO reduction by NH3 over CuMnOx catalysts and the influence mechanism of CO Author: Xuan, Chengbo; Han, Shiwang; Wang, Luyuan; Zhang, Xingyu; Sun, Rongfeng; Cheng, Xingxing; Wang, Zhiqiang; Ma, Chunyuan; Zhao, Tiantian; Hou, Xukai Journal: CATALYSIS SCIENCE & TECHNOLOGY. 2023; Vol. , Issue , pp. -. DOI: 10.1039/d3cy00403a DOI |
2. | Efficient biosynthesis of 5-aminolevulinic acid from glutamate via whole-cell biocatalyst in immobilized engineered Escherichia coli Author: Luo, Ying; Liu, Liang; Yang, Jinshui; Su, Anping; Yu, Qijun; Wang, Entao; Yuan, Hongli Journal: CATALYSIS SCIENCE & TECHNOLOGY. 2023; Vol. 13, Issue 9, pp. 2810-2819. DOI: 10.1039/d2cy02172b DOI |
3. | Insights into the mechanism of carboxylic acid hydrogenation into alcohols at the MnO/Cu (111) interface: a combined DFT and kinetic study Author: Du, Jingbo; Chen, Yifei; Wang, Lingtao; Zhang, Minhua Journal: CATALYSIS SCIENCE & TECHNOLOGY. 2023; Vol. , Issue , pp. -. DOI: 10.1039/d3cy00247k DOI |
4. | Review on cobalt ferrite as photo-Fenton catalysts for degradation of organic wastewater Author: Wang, Zhiwei; You, Junhua; Li, Jingjing; Xu, Jingsheng; Li, Xuanhao; Zhang, Hangzhou Journal: CATALYSIS SCIENCE & TECHNOLOGY. 2023; Vol. 13, Issue 2, pp. 274-296. DOI: 10.1039/d2cy01300b DOI |
5. | Catalytic upgrading of ethanol to higher alcohols over nickel-modified Cu-La2O3/Al2O3 catalysts Author: He, Jinfeng; Li, Xiuzhen; Kou, Jianyao; Tao, Tingjie; Shen, Xinyue; Jiang, Dahao; Lin, Lili; Li, Xiaonian Journal: CATALYSIS SCIENCE & TECHNOLOGY. 2023; Vol. 13, Issue 1, pp. 170-177. DOI: 10.1039/d2cy01554d DOI |
6. | DFT computational insight into Pd(0)-catalyzed oxidative cross-coupling of 1,2-allenyl ketones and aryl boronic acids: Pd(ii)-carbenoid intermediate versus pi-allyl-Pd(ii) intermediate Author: Xu, Jihong; Liu, Yanhong; Liu, Chengbu; Zhang, Dongju Journal: CATALYSIS SCIENCE & TECHNOLOGY. 2023; Vol. 13, Issue 1, pp. 72-80. DOI: 10.1039/d2cy01506d DOI |
7. | ZnIn2S4 with oxygen atom doping and surface sulfur vacancies for overall water splitting under visible light irradiation Author: Jing, Haitong; Ren, Jun; Yue, Jianyong; Liu, Shiyan; Liang, Qifeng; Wu, Rong; Wang, Yawei; Fang, Zebo; Li, Huili; Wei, Shunhang Journal: CATALYSIS SCIENCE & TECHNOLOGY. 2023; Vol. 13, Issue 1, pp. 226-232. DOI: 10.1039/d2cy01794f DOI |
8. | Facile green synthesis of a dahlia-like anatase/TiO2(B) phase junction for boosting the photocatalytic degradation of persistent tetracycline Author: Wang, Qian; Wang, Xuhua; Hao, Pin; Fang, Xinxin; Huang, Fang; Shi, Xifeng; Cui, Guanwei; Song, Chengyuan; Tang, Bo Journal: CATALYSIS SCIENCE & TECHNOLOGY. 2023; Vol. 13, Issue 1, pp. 56-61. DOI: 10.1039/d2cy01775j DOI |
9. | A Z-scheme 2D/0D ZnIn2S4/ZnO heterostructure for efficient photocatalytic degradation of tetracycline: energy band engineering and morphology modulation Author: Wang, Ru; Xie, Xiaoyu; Xu, Chunxiang; Ji, Rendong; Shi, Zengliang; Cui, Qiannan; Wang, Mingliang Journal: CATALYSIS SCIENCE & TECHNOLOGY. 2023; Vol. 13, Issue 2, pp. 426-436. DOI: 10.1039/d2cy01375d DOI |
10. | Oxygen vacancies enhance the photocatalytic deep oxidation of NO over an N-doped KNbO3 catalyst Author: Song, Xinjie; Jiang, Wenjie; Cai, Zehua; Chen, Xun; Dai, Wenxin; Fu, Xianzhi Journal: CATALYSIS SCIENCE & TECHNOLOGY. 2023; Vol. 13, Issue 1, pp. 195-204. DOI: 10.1039/d2cy01656g DOI |
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