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Acs Catalysis

Acs Catalysis杂志,由American Chemical Society出版,于2011年创刊,Biweekly,出版语言English,ISSN:2155-5435,E-ISSN:2155-5435。

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Acs Catalysis
Acs Catalysis
Acs Catalysis
SCI SCIE EI

杂志介绍

JCR分区
Q1
中科院分区
1区
影响因子
13.6
CiteScore
20.4
期刊收录
SCI、SCIE、EI

Acs Catalysis(中文译名:《Acs催化》),ISSN:2155-5435,EISSN:2155-5435,是American Chemical Society出版的国际性学术期刊,创刊于2011年,以Biweekly形式稳定发行,2026年总发文量约1775篇。该刊采用非OA开放访问,学科归属为CHEMISTRY, PHYSICAL。该刊是化学、物理化学领域的国际权威刊物,已被SCI(科学引文索引)、SCIE(科学引文索引扩展版)、EI(工程索引)等国际主流学术数据库收录。2026年期刊影响因子达13.6,2025年期刊CiteScore为20.4,2025年期刊自引率约5.1%,在中科院期刊分区体系中位列化学大类1区TOP 期刊,在所属学科领域具备高学术影响力与国际认可度。Acs Catalysis长期聚焦化学、物理化学及相关产业的技术应用前沿,平均审稿周期约1.0个月,审稿流程高效稳定。在稿件录用评判中,该刊将创新性与前沿性作为核心遴选标准,重点收录能够对化学、物理化学领域的落地与发展产生实质性推动价值的研究成果。

从全球发文格局来看,CHINA MAINLANDUSA、GERMANY (FED REP GER)、Japan、England、Spain、France等为核心发文国家与地区;

期刊评价

名词解释:

影响因子(Impact Factor, IF):指该期刊前两年发表的文章,在第三年的平均被引用次数。它反映了期刊的近期平均影响力和热度。

中科院分区:中科院分区表是国内主流的学术期刊分级评价工具,核心意义是建立跨学科可比的统一评价标尺,为职称评审、学位授予、科研立项等科研管理工作提供标准化量化依据,同时帮助科研人员筛选优质期刊、规避学术风险,适配国内本土化的科研评价需求。

期刊分区表

《新锐期刊分区表》(2026年3月发布)

大类学科 小类学科 Top期刊 综述期刊
化学
1区
CHEMISTRY, PHYSICAL 物理化学
1区

期刊分区表(2025年3月升级版)

大类学科 小类学科 Top期刊 综述期刊
化学
1区
CHEMISTRY, PHYSICAL 物理化学
1区

期刊分区表(2023年12月升级版)

大类学科 小类学科 Top期刊 综述期刊
化学
1区
CHEMISTRY, PHYSICAL 物理化学
1区

JCR分区

2025-2026年最新版

按JCI指标学科分区 收录子集 分区 排名 百分位
学科:CHEMISTRY, PHYSICAL SCIE Q1 22 / 191

88.7

学科:CHEMISTRY, PHYSICAL SCIE Q1 20 / 191

89.79

2024-2025年最新版

按JCI指标学科分区 收录子集 分区 排名 百分位
学科:CHEMISTRY, PHYSICAL SCIE Q1 21 / 185

88.9

学科:CHEMISTRY, PHYSICAL SCIE Q1 20 / 185

89.46


中国学者近期发文

1
Synergistic Octahedral Iron and Brønsted Acid Sites in Fe-ZSM-5 for Selective Phenol Hydroxylation to Dihydroxybenzene

Author:Ding, Mengqi; Zhao, Xinhong; Li, Yanru; Long, Xuefeng; Li, Hongwei; Ji, Dong; Li, Guixian

Journal: ACS CATALYSIS. 2026; Vol. 16, Issue 8, pp. 7592-7610. DOI: 10.1021/acscatal.6c00216

2
Dual-Vacancy Synergy in Vertically Aligned In2O3-MoS2 for High-Efficiency CO2 Hydrogenation to Methano

Author:Guo, Junxin; Zhang, Anyu; Huhe, Dule; Zhou, Ling; Wang, Zhao

Journal: ACS CATALYSIS. 2026; Vol. 16, Issue 8, pp. 7738-7748. DOI: 10.1021/acscatal.6c01294

3
Engineering Hydrogen Spillover via Zn Doping in Cu-ZnCeO z Solid Solutions for Efficient Low-Temperature Methanol Synthesi

Author:Ma, Chao; Li, Mengqian; Wang, Bohua; Liu, Guobin; Dong, Cui; Qu, Zhenping

Journal: ACS CATALYSIS. 2026; Vol. 16, Issue 8, pp. 7705-7716. DOI: 10.1021/acscatal.6c00926

4
Hydrogen Coverage-Driven Interfacial Water Restructuring Boosts Alkaline Hydrogen Oxidatio

Author:Yang, Chaoyi; Dan, Zixuan; Dai, Zihao; Yue, Jianchao; Men, Yana; Luo, Wei

Journal: ACS CATALYSIS. 2026; Vol. 16, Issue 8, pp. 7486-7494. DOI: 10.1021/acscatal.5c08948

5
Stabilizing RuO2 in Acidic Oxygen Evolution via Controlled Lattice Oxygen Hydroxylatio

Author:Wang, Zhongxian; Yang, Fulin; Wang, Fei; Sun, Xin; Li, Kai; Feng, Ligang; Peng, Zhangquan; Xu, Junyuan

Journal: ACS CATALYSIS. 2026; Vol. 16, Issue 8, pp. 7307-7316. DOI: 10.1021/acscatal.5c08110

6
Accelerating Ni2+/Ni3+ Transformation in PtNi/Ni Heterojunction Rooted on Porous TiO2 Nanotubes for Enhanced Urea Electrooxidatio

Author:Liu, Jiaqing; Liu, Xiaoqing; Zhang, Jiacheng; Liang, Zheng; Lin, Wei; Lu, Xue Feng

Journal: ACS CATALYSIS. 2026; Vol. 16, Issue 8, pp. 7726-7737. DOI: 10.1021/acscatal.6c01086

7
Laser-Engineered Defective Carbon-Supported Ni Catalyst Boosts Dry Reforming of Methan

Author:Huo, Kaixuan; Li, Qi; Wang, Yang; Jiang, Hu; Cheng, Zhinian; Sun, Yu; Zhang, Ying; Zhou, Luyuan; Xing, Tao; Lu, Yiwu; Sui, Jiancai; Liu, Qiang; Zhang, Jinqiang; Hu, Han; Tsubaki, Noritatsu; Wu, Mingbo

Journal: ACS CATALYSIS. 2026; Vol. 16, Issue 8, pp. 7289-7306. DOI: 10.1021/acscatal.5c08125

8
Copper-Catalyzed Asymmetric Reductions of 2H-Azirine

Author:Zheng, Yinuo; Ng, Elvis Wang Hei; Shi, Yongjie; Rizzo, Antonio; Chiu, Pauline

Journal: ACS CATALYSIS. 2026; Vol. 16, Issue 8, pp. 7749-7757. DOI: 10.1021/acscatal.6c00982

9
Generative Artificial Intelligence-Empowered Virtual Evolution of Enzyme with the VERnet Mode

Author:Li, Chang; Xu, Wenfeng; Yang, Hang; Li, Yifei; Zhang, Lili; Chen, Ziwei; Wang, Shuanghu; Xie, Yibo; Li, Hexin; Liu, Ye; Li, Yayu; Lu, Zebei; Zhang, Chunqing; Yu, Xue; Dai, Dapeng; Jin, Pengfei; Xiao, Fei

Journal: ACS CATALYSIS. 2026; Vol. 16, Issue 8, pp. 7669-7682. DOI: 10.1021/acscatal.6c00759

10
Polyoxometalate-Mediated Spatially Compartmentalized S-scheme Heterojunction Coupled with Molecular Junction for Overall CO2 Photoreductio

Author:Li, Bonan; Chen, Mengxue; Sun, Weize; Shi, Jingwen; Zhang, Xi; Fang, Xiao; Yang, Yanfang; Ma, Baochun; Lan, Ya-qian; Ding, Yong

Journal: ACS CATALYSIS. 2026; Vol. 16, Issue 8, pp. 7522-7536. DOI: 10.1021/acscatal.5c09326


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Acs Catalysis

国际简称:ACS Catal.参考译名:Acs催化

年发文量:1775 CiteScore:20.4 是否预警:否 Gold OA文章占比:19.15% 研究类文章占比:93.97%

杂志社联系方式:AMER CHEMICAL SOC, 1155 16TH ST, NW, WASHINGTON, USA, DC, 20036

Acs Catalysis