Catalysis Science & Technology

Catalysis Science & Technology

催化科技

  • 3区 中科院分区
  • Q2 JCR分区

期刊简介

《Catalysis Science & Technology》是由Royal Society of Chemistry出版社于2011年创办的英文国际期刊(ISSN: 2044-4753,E-ISSN: 2044-4761),该期刊长期致力于物理化学领域的创新研究,主要研究方向为CHEMISTRY, PHYSICAL。作为SCIE收录期刊(JCR分区 Q2,中科院 3区),本刊采用OA未开放获取模式(OA占比0.0688...%),以发表物理化学领域等方向的原创性研究为核心(研究类文章占比93.50%%)。凭借严格的同行评审与高效编辑流程,期刊年载文量精选控制在600篇,确保学术质量与前沿性。成果覆盖Web of Science、Scopus等国际权威数据库,为学者提供推动化学领域高水平交流平台。

投稿咨询

投稿提示

Catalysis Science & Technology审稿周期约为 约1.0个月 。该刊近年未被列入国际预警名单,年发文量约600篇,录用竞争适中,主题需确保紧密契合化学前沿。投稿策略提示:避开学术会议旺季投稿以缩短周期,语言建议专业润色提升可读性。

  • 化学 大类学科
  • English 出版语言
  • 是否预警
  • SCIE 期刊收录
  • 600 发文量

中科院分区

中科院 SCI 期刊分区 2023年12月升级版

Top期刊 综述期刊 大类学科 小类学科
化学
3区
CHEMISTRY, PHYSICAL 物理化学
3区

中科院 SCI 期刊分区 2022年12月升级版

Top期刊 综述期刊 大类学科 小类学科
化学
2区
CHEMISTRY, PHYSICAL 物理化学
3区

JCR分区

按JIF指标学科分区 收录子集 分区 排名 百分位
学科:CHEMISTRY, PHYSICAL SCIE Q2 68 / 178

62.1%

按JCI指标学科分区 收录子集 分区 排名 百分位
学科:CHEMISTRY, PHYSICAL SCIE Q2 76 / 178

57.58%

CiteScore

CiteScore SJR SNIP CiteScore 排名
CiteScore:8.7 SJR:1.05 SNIP:0.818
学科类别 分区 排名 百分位
大类:Chemical Engineering 小类:Catalysis Q2 21 / 68

69%

期刊发文

  • 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

  • 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

  • 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

  • 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

  • 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

  • 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

  • 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

  • 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