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Advanced Energy Materials

Advanced Energy Materials杂志,由Wiley-VCH Verlag出版,于2011年创刊,36 issues/year,出版语言English,ISSN:1614-6832,E-ISSN:1614-6840。

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Advanced Energy Materials
Advanced Energy Materials
Advanced Energy Materials
SCI SCIE EI

杂志介绍

JCR分区
Q1
中科院分区
1区
影响因子
25.5
CiteScore
39.9
期刊收录
SCI、SCIE、EI

Advanced Energy Materials(中文译名:《先进能源材料》),ISSN:1614-6832,EISSN:1614-6840,是Wiley-VCH Verlag出版的国际性学术期刊,创刊于2011年,以36 issues/year形式稳定发行,2026年总发文量约1076篇。该刊采用非OA开放访问,学科归属为CHEMISTRY, PHYSICAL - ENERGY & FUELS。该刊是材料科学、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25.5,2025年期刊CiteScore为39.9,2025年期刊自引率约3.9%,在中科院期刊分区体系中位列材料科学大类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。Advanced Energy Materials长期聚焦材料科学、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,重点收录能够对材料科学、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、South Korea、GERMANY (FED REP GER)、Australia、England、Singapore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
材料科学
1区
CHEMISTRY, PHYSICAL 物理化学 ENERGY & FUELS 能源与燃料 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合 PHYSICS, APPLIED 物理:应用 PHYSICS, CONDENSED MATTER 物理:凝聚态物理
1区 1区 1区 1区 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
材料科学
1区
ENERGY & FUELS 能源与燃料 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合 PHYSICS, APPLIED 物理:应用 PHYSICS, CONDENSED MATTER 物理:凝聚态物理
1区 1区 1区 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
材料科学
1区
CHEMISTRY, PHYSICAL 物理化学 ENERGY & FUELS 能源与燃料 MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合 PHYSICS, APPLIED 物理:应用 PHYSICS, CONDENSED MATTER 物理:凝聚态物理
1区 1区 1区 1区 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 6 / 191

97.1

学科:ENERGY & FUELS SCIE Q1 5 / 191

97.6

学科:MATERIALS SCIENCE, MULTIDISCIPLINARY SCIE Q1 12 / 472

97.6

学科:PHYSICS, APPLIED SCIE Q1 6 / 191

97.1

学科:PHYSICS, CONDENSED MATTER SCIE Q1 4 / 81

95.7

学科:CHEMISTRY, PHYSICAL SCIE Q1 6 / 191

97.12

学科:ENERGY & FUELS SCIE Q1 5 / 191

97.64

学科:MATERIALS SCIENCE, MULTIDISCIPLINARY SCIE Q1 12 / 473

97.57

学科:PHYSICS, APPLIED SCIE Q1 5 / 191

97.64

学科:PHYSICS, CONDENSED MATTER SCIE Q1 3 / 81

96.91

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 6 / 185

97

学科:ENERGY & FUELS SCIE Q1 5 / 182

97.5

学科:MATERIALS SCIENCE, MULTIDISCIPLINARY SCIE Q1 12 / 461

97.5

学科:PHYSICS, APPLIED SCIE Q1 8 / 187

96

学科:PHYSICS, CONDENSED MATTER SCIE Q1 4 / 80

95.6

学科:CHEMISTRY, PHYSICAL SCIE Q1 6 / 185

97.03

学科:ENERGY & FUELS SCIE Q1 4 / 182

98.08

学科:MATERIALS SCIENCE, MULTIDISCIPLINARY SCIE Q1 12 / 463

97.52

学科:PHYSICS, APPLIED SCIE Q1 5 / 187

97.59

学科:PHYSICS, CONDENSED MATTER SCIE Q1 3 / 80

96.88


中国学者近期发文

1
Bilateral Anchoring Strategy Enables Highly Efficient Wide-Bandgap Perovskite Solar Cells/Modules for Self-Powered Photo-Electrocatalytic Antibacterial Syste

Author:Yang, Jingting; Liu, Xuean; Jiang, Liqiang; Wang, Baochang; Chen, Zicong; Zuo, Yudong; Liu, Boyan; Shi, Yuxin; Zhu, Hongtao; Zhou, Ru; Chen, Pengpeng; Jiang, Yang; Tong, Guoqing

Journal: ADVANCED ENERGY MATERIALS. 2026; Vol. , Issue , pp. -. DOI: 10.1002/aenm.70897

2
Simultaneously Achieving High Energy Density, Mechanical Robustness, and Closed-Loop Recyclability in Phase Change Materials for Advanced Thermal Energy System

Author:Sheng, Mengjie; Rong, Haohua; Zhou, Cheng; Sheng, Xinxin; Hu, Xinpeng; Tang, Xiangying; Qu, Jinping; Lu, Xiang

Journal: ADVANCED ENERGY MATERIALS. 2026; Vol. , Issue , pp. -. DOI: 10.1002/aenm.70874

3
Interpretable Descriptor Enabling Prediction of Propylene Yield for Propane Dehydrogenation Catalyst

Author:Gao, Yuming; Hong, Juncheng; Wang, Pengxuan; Guo, Chenyi; Yan, Haoyu; Wang, Zhe; Ma, Jiaming; Zhang, Qian; Tang, Dawei; Jiang, Bo

Journal: ADVANCED ENERGY MATERIALS. 2026; Vol. , Issue , pp. -. DOI: 10.1002/aenm.70893

4
CoSn Alloy Catalysts With Optimized d-Band Center for Chloride-Resistant ORR in Harsh Marine Environmen

Author:Liu, Yingxin; Qu, Wenjia; Wang, Li; Tang, Quanjun; Pan, Ziyi; Fan, Zehui; Cui, Yunjia; Huang, Yuqiong; Yang, Shouhua; Song, Guisheng; Zhang, Chen; Ling, Guowei; Yang, Quan-Hong

Journal: ADVANCED ENERGY MATERIALS. 2026; Vol. , Issue , pp. -. DOI: 10.1002/aenm.70887

5
Low-Temperature-Resilient and High-Rate Polypyrrole-Vanadium Oxide Carbon Fiber Structural Supercapacitors with Superior Mechanical-Electrochemical Synerg

Author:Zhou, Heng; Xu, Xin; Liang, Penghua; Zhang, Zheng; Yao, Tengyu; Guo, Jun; Zhu, Xingrong; Wang, Feier; Ni, Yuan; Yan, Kang; Wang, Jing; Shen, Laifa; Zhu, Kongjun

Journal: ADVANCED ENERGY MATERIALS. 2026; Vol. , Issue , pp. -. DOI: 10.1002/aenm.70890

6
High-Durability in-Phase-Stacked Triboelectric Nanogenerators with Dual-Roller Charge Enhancement for Ocean Energy Harvestin

Author:Zhao, Wenting; Liu, Lindong; Shang, Yurui; Wang, Xiangyi; Han, Rongbing; Chen, Pengfei; Wang, Zhong Lin; Jiang, Tao

Journal: ADVANCED ENERGY MATERIALS. 2026; Vol. , Issue , pp. -. DOI: 10.1002/aenm.70891

7
An Electrochemically Reconstructed Ternary Heterostructure for Efficient Ammonia Production in an Asymmetric Seawater-Based Electrosynthesis Reacto

Author:Wu, Jinxiao; Xi, Zichao; Liu, Fan; Yu, Huimin; Jin, Huanyu; Cheng, Hui-Ming

Journal: ADVANCED ENERGY MATERIALS. 2026; Vol. , Issue , pp. -. DOI: 10.1002/aenm.70885

8
The Synergy of Multiple Polarization Effect to Boost Electromagnetic Energy Absorptio

Author:Li, Da; Liu, Pengfei; Zhang, Yang; Zhao, Yinyin; Zhao, Xiaoguang; Yang, Ke; Feng, Pingxian; Qiu, Shuoyang; Wang, Huan; Hou, Yanglong; Ma, Zhenhui

Journal: ADVANCED ENERGY MATERIALS. 2026; Vol. , Issue , pp. -. DOI: 10.1002/aenm.70892

9
Suppressing V/Na Anti-Site Defects via Fluorine Doping Enables High-Voltage and Stable V-Based NASICON Cathodes for Sodium-Ion Batterie

Author:Shi, Chenglong; Muhtar, Dilxat; Pei, Yunlong; Lu, Xiaoyi; Liu, Fangqing; Wang, Di; Lu, Xia; Sun, Zhipeng

Journal: ADVANCED ENERGY MATERIALS. 2026; Vol. , Issue , pp. -. DOI: 10.1002/aenm.70898

10
A Cobalt-Mediated Facet Engineering for High-Voltage Na4Fe3(PO4)2P2O7 Cathode

Author:Yang, Chihao; Ren, Yanzhao; Wang, Biao; Luo, Hao; Liu, Wenhong; Yang, Qingchun; Li, Zhiwei; Kong, Xianghua; Yao, Yu; Yu, Yan; Zhang, Dawei

Journal: ADVANCED ENERGY MATERIALS. 2026; Vol. , Issue , pp. -. DOI: 10.1002/aenm.70907


在线咨询

Advanced Energy Materials

国际简称:ADV ENERGY MATER参考译名:先进能源材料

年发文量:1076 CiteScore:39.9 是否预警:否 Gold OA文章占比:25.34% 研究类文章占比:85.50%

杂志社联系方式:POSTFACH 101161, WEINHEIM, GERMANY, 69451

Advanced Energy Materials