Advanced Energy Materials
ISSN:1614-6832

Advanced Energy Materials

ADV ENERGY MATER
学科领域:材料科学
是否预警:不在预警名单内
是否OA:
录用周期:约1.0个月
新锐分区:材料科学1区
年发文量:1204
影响因子:26
JCR分区:Q1

基本信息

Advanced Energy Materials成立于2011年,是一个国际性、跨学科、英语论坛,汇集了关于各种形式的能源收集、转换和储存所用材料的原创同行评审论文。高级能源材料涵盖了能源相关研究的所有主题:有机和无机光伏电池和超级电容器燃料电池氢的产生和储存热电水分解和光催化太阳能燃料和热太阳能磁热超导电子学。
1614-6832SCIE/Scopus收录
26
23.3
2026年3月发布
点击查看历史分区趋势    >
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
1区
ENERGY & FUELS 能源与燃料
1区
MATERIALS SCIENCE, MULTIDISCIPLINARY 材料科学:综合
1区
PHYSICS, APPLIED 物理:应用
1区
PHYSICS, CONDENSED MATTER 物理:凝聚态物理
1区
N/A
WOS期刊SCI分区  2024-2025最新升级版
按JIF指标学科分区收集子录JIF分区JIF排名百分位
学科:CHEMISTRY, PHYSICAL
SCIE
Q1
6/185
学科:ENERGY & FUELS
SCIE
Q1
5/182
学科:MATERIALS SCIENCE, MULTIDISCIPLINARY
SCIE
Q1
12/461
学科:PHYSICS, APPLIED
SCIE
Q1
8/187
学科:PHYSICS, CONDENSED MATTER
SCIE
Q1
4/80
按JCR指标学科分区收集子录JCR分区JCR排名百分位
学科:CHEMISTRY, PHYSICAL
SCIE
Q1
6/185
学科:ENERGY & FUELS
SCIE
Q1
4/182
学科:MATERIALS SCIENCE, MULTIDISCIPLINARY
SCIE
Q1
12/463
学科:PHYSICS, APPLIED
SCIE
Q1
5/187
学科:PHYSICS, CONDENSED MATTER
SCIE
Q1
3/80
156
1204
35%0约1.0个月-CHEMISTRY, PHYSICAL-ENERGY & FUELS
4.2%
时间预警情况
2026年03月发布的新锐学术版不在预警名单中
2025年03月发布的2025版不在预警名单中
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
88.12%20.15%0.84%
CiteScore:40.70
SJR:8.378
SNIP:3.282
学科类别分区排名百分位
大类:Energy
小类:Renewable Energy, Sustainability and the Environment
Q1
5 / 297
大类:Energy
小类:General Materials Science
Q1
5 / 460

期刊高被引文献

Atomic Fe‐Doped MOF‐Derived Carbon Polyhedrons with High Active‐Center Density and Ultra‐High Performance toward PEM Fuel Cells
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201802856
Alkali Chlorides for the Suppression of the Interfacial Recombination in Inverted Planar Perovskite Solar Cells
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201803872
Recent Advances and Emerging Trends in Photo-Electrochemical Solar Energy Conversion
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201802877
Fundamental Understanding of Photocurrent Hysteresis in Perovskite Solar Cells
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201803017
Molecular Engineering of Copper Phthalocyanines: A Strategy in Developing Dopant‐Free Hole‐Transporting Materials for Efficient and Ambient‐Stable Perovskite Solar Cells
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201803287
Rational Design of Graphene-Supported Single Atom Catalysts for Hydrogen Evolution Reaction
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201803689
Advanced Alkali Treatments for High‐Efficiency Cu(In,Ga)Se2 Solar Cells on Flexible Substrates
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201900408
An Organic Anode for High Temperature Potassium‐Ion Batteries
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201802986
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Ambient‐Pressure Relithiation of Degraded LixNi0.5Co0.2Mn0.3O2 (0 < x < 1) via Eutectic Solutions for Direct Regeneration of Lithium‐Ion Battery Cathodes
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201900454
Honeycomb Structure Inspired Triboelectric Nanogenerator for Highly Effective Vibration Energy Harvesting and Self‐Powered Engine Condition Monitoring
来源期刊:Advanced Energy MaterialsDOI:10.1002/aenm.201902460
Superior Lithium Storage Capacity of α‐MnS Nanoparticles Embedded in S‐Doped Carbonaceous Mesoporous Frameworks
来源期刊:Advanced Energy MaterialsDOI:10.1002/aenm.201902077
Boosting the Performance of WO3/n‐Si Heterostructures for Photoelectrochemical Water Splitting: from the Role of Si to Interface Engineering
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201900940
Corrugation Enabled Asymmetrically Ultrastretchable (95%) Monocrystalline Silicon Solar Cells with High Efficiency (19%)
来源期刊:Advanced Energy MaterialsDOI:10.1002/aenm.201902883
A High‐Throughput Search for Functionally Stable Interfaces in Sulfide Solid‐State Lithium Ion Conductors
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201900807
Modifying La0.6Sr0.4MnO3 Perovskites with Cr Incorporation for Fast Isothermal CO2‐Splitting Kinetics in Solar‐Driven Thermochemical Cycles
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201803886
Boosting the Activity of BaCo0.4Fe0.4Zr0.1Y0.1O3−δ Perovskite for Oxygen Reduction Reactions at Low‐to‐Intermediate Temperatures through Tuning B‐Site Cation Deficiency
来源期刊:Advanced Energy MaterialsDOI:10.1002/aenm.201902384
Cadmium Free Cu2ZnSnS4 Solar Cells with 9.7% Efficiency
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201900439
Confined Catalysis: Progress and Prospects in Energy Conversion
来源期刊:Advanced Energy MaterialsDOI:10.1002/aenm.201902307
1T′‐ReS2 Confined in 2D‐Honeycombed Carbon Nanosheets as New Anode Materials for High‐Performance Sodium‐Ion Batteries
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201901146
High-Output Triboelectric Nanogenerator Based on Dual Inductive and Resonance Effects-Controlled Highly Transparent Polyimide for Self-Powered Sensor Network Systems
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201901987
Highly Stabilized Quantum Dot Ink for Efficient Infrared Light Absorbing Solar Cells
来源期刊:Advanced Energy MaterialsDOI:10.1002/aenm.201902809
Strong Interplay between Sodium and Oxygen in Kesterite Absorbers: Complex Formation, Incorporation, and Tailoring Depth Distributions
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201900740
A Long Lifetime Aqueous Organic Solar Flow Battery
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201900918
Nonpolar Alkanes Modify Lithium‐Ion Solvation for Improved Lithium Deposition and Stripping
来源期刊:Advanced Energy MaterialsDOI:10.1002/aenm.201902116
Synthesis and Electrochemical Activity of Some Na(Li)‐Rich Ruthenium Oxides with the Feasibility to Stabilize Ru 6+
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201803674
Spatially and Spectrally Resolved Absorptivity: New Approach for Degradation Studies in Perovskite and Perovskite/Silicon Tandem Solar Cells
来源期刊:Advanced Energy MaterialsDOI:10.1002/aenm.201902901
Liquid–solid interfacial assemblies of soft materials for functional freestanding layered membrane–based devices toward electrochemical energy systems
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201804005
Low‐Temperature‐Processed Colloidal Quantum Dots as Building Blocks for Thermoelectrics
来源期刊:Advanced Energy MaterialsDOI:10.1002/AENM.201803049
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