Journal of The Korean Ceramic Society

Journal of The Korean Ceramic Society
期刊缩写:
J. Korean Ceram. Soc.
影响因子:
2.7
ISSN:
print: 1229-7801
on-line: 2234-0491
研究领域:
MATERIALS SCIENCE, CERAMICS
自引率:
12.00%
Gold OA文章占比:
2.88%
原创研究文献占比:
91.43%
SCI收录类型:
Science Citation Index Expanded (SCIE) || Scopus (CiteScore)
期刊介绍英文:
The Journal of Korean Ceramic Society publishes the original and significant results of experimental and theoretical research relating to all categories of ceramics including composites and hybrids. The journal aims at providing an international forum for fundamental understanding and applied knowledge of the relationship between processing, microstructure and properties of ceramics. The scope of the journal includes basic science and classical ceramics, engineering ceramics, electronic and energy ceramics, noncrystalline ceramics, ceramics related to nanoscience, bioceramics, and emerging fields of ceramics. The Journal of Korean Ceramic Society is a peer-reviewed international journal. It features three types of submissions: Full Length Paper, Review Paper, and Communications which contain reports of original research and reviews on all aspects of ceramics and ceramics-based composites ranging from fundamentals to application.
CiteScore:
CiteScoreSJRSNIPCiteScore排名
4.80.5060.703
学科
排名
百分位
大类:Materials Science
小类:Ceramics and Composites
49 / 127
61%
发文信息
中科院SCI期刊分区
大类 小类 TOP期刊 综述期刊
4区 材料科学
3区 材料科学:硅酸盐 MATERIALS SCIENCE, CERAMICS
WOS期刊分区
学科分类
Q1MATERIALS SCIENCE, CERAMICS
历年影响因子
2021年2.5060
2022年2.5000
2023年2.7000
历年发表
2012年111
2013年92
2014年112
2015年95
2016年109
2017年74
2018年72
2019年72
2020年88
2021年68
2022年88
投稿信息
出版语言:
English
出版国家(地区):
GERMANY
初审时长:
18 days
出版商:
SPRINGER HEIDELBERG
编辑部地址:
TIERGARTENSTRASSE 17, HEIDELBERG, GERMANY, D-69121

Journal of The Korean Ceramic Society - 最新文献

Monte Carlo study of finite-temperature transition in R_2(R = Yb and Er)M_2(M = Ti and Sn)O_7 anisotropic pyrochlore

Pub Date : 2024-01-03 DOI: 10.1007/s43207-023-00349-7 K. Khallouq, R. Masrour, A. El Maazouzi

Synergistic effect of embossed Cu current collector and potassium nitrate for achieving dense lithium deposition and improving cycle life in anode-free Li metal batteries

Pub Date : 2023-12-18 DOI: 10.1007/s43207-023-00354-w Suhyun Ahn, Hyeonjun Song, Sucheol Kim, Hojae Lee, Young-Beom Kim, K. Jang, Minsoo Ha, Heejoon Ahn
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