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Journal of Industrial and Engineering Chemistry (JIEC)

Publisher :

Elsevier

Scopus Profile
Peer reviewed only
Scopus Profile
Open Access
  • Chemistry
  • Chemical Engineering
  • Technology
e-ISSN :

1876-794X

Issue Frequency :

Monthly

Impact Factor :

5.9

p-ISSN :

1226-086X

Est. Year :

1996

Mobile :

12345678910

Country :

Korea South

Language:

English

APC :

YES

Email :

ksiec@ksiec.or.kr

Journal Descriptions

The official journal of the Korean Society of Industrial and Engineering Chemistry Publication of the Korean Society of Industrial and Engineering Chemistry Journal of Industrial and Engineering Chemistry is published monthly in English by the Korean Society of Industrial and Engineering Chemistry. JIEC brings together multidisciplinary interests in one journal and is to disseminate information on all aspects of research and development in industrial and engineering chemistry. Contributions in the form of research articles, short communications, notes and reviews are considered for publication. The editors welcome original contributions that have not been and are not to be published elsewhere. Instruction to authors and a manuscript submissions form are printed at the end of each issue. Bulk reprints of individual articles can be ordered. This publication is partially supported by Korea Research Foundation and the Korean Federation of Science and Technology Societies.


Journal of Industrial and Engineering Chemistry (JIEC) is :

International, Peer-Reviewed, Open Access, Refereed, Chemistry, Chemical Engineering, Technology , Online or Print, Monthly Journal

UGC Approved, ISSN Approved: P-ISSN - 1226-086X, E-ISSN - 1876-794X, Established in - 1996, Impact Factor - 5.9

Not Provide Crossref DOI

Indexed in WoS

Not indexed in Scopus, DOAJ, PubMed, UGC CARE

Publications of JIEC

Research Article
  • dott image J. Princy
  • dott image July, 2024

One-step synthesis and fabrication of ZrMo2O8 nanostructures as advanced electrode material for energy storage applications

Nanostructures of metal molybdates show great potential as high-performance electrode materials for the forthcoming development of energy storage devices. In present work, ZrMo2O8 nanostruct...

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