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ACS Applied Energy Materials (ACS AEM)

Publisher :

American Chemical Society (ASC)

Scopus Profile
Peer reviewed only
Scopus Profile
Open Access
  • Chemistry
  • biochemistry
  • physics
  • +1

e-ISSN :

2574-0962

Issue Frequency :

Monthly

Impact Factor :

6.4

Est. Year :

2018

Mobile :

8002275558

DOI :

YES

Country :

United States

Language :

English

APC :

YES

Impact Factor Assignee :

Google Scholar

Email :

eic@ami.acs.org

Journal Descriptions

ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering aspects of materials, engineering, chemistry, physics, and biology relevant to sustainable applications in energy conversion and storage. Sample research topics that span the journal's scope for energy storage applications: Electrode and membrane materials for various energy applications Solid state batteries, fuel cells, supercapacitors, and redox flow batteries Energy conversion applications include new inorganic, hybrid, catalytic, and/or organic materials Thermoelectrics Photovoltaics Photo-electrosynthesis cells Submissions that are NOT suitable for ACS Applied Energy Materials: Reports that are essentially reporting data or applications of data Low power energy conversion materials, such as piezoelectric materials Luminescent materials & devices Studies of traditional fossil fuel Energetic/explosive materials for military applications Photodegradation of environmental pollutants All submissions are subject to critical, anonymous peer review. It is to be understood that the final decision relating to a manuscript's suitability rests solely with the Editor.


ACS Applied Energy Materials (ACS AEM) is :

International, Peer-Reviewed, Open Access, Refereed, Chemistry, biochemistry, physics, Pharmacology , Online Monthly Journal

UGC Approved, ISSN Approved: P-ISSN , E-ISSN - 2574-0962, Established in - 2018, Impact Factor - 6.4

Provide Crossref DOI

Indexed in Scopus, WoS, PubMed

Not indexed in DOAJ, UGC CARE

Publications of ACS AEM

  • dott image April, 2023

Asymmetric Thermoelectric Performance Tuning in Low-Cost ZrFexNi1–xSb Double Half-Heusler Materials

The new paradigm for increasing the commercial viability of thermoelectric materials in the energy sector is the theoretical prediction and subsequent experimental validation and optimizatio...

  • dott image February, 2024

Enhanced Electrical, Thermal, and Mechanical Properties of SnTe through Equimolar Multication Alloying for Suitable Device Applications

With the ever-growing demand for eco-friendly energy sources to mitigate the global rising temperatures, the universal insatiable need for sustainable and efficient energy sources are earnes...

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