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Discover Materials

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历年发表 同类期刊
Discover Materials
ISSN:
ISSN是由8个数字组成的编码,旨在识别各种报纸、专业杂志、画报、期刊,无论其性质或载体版本(纸版及电子版)。
print: 2730-7727
研究领域:
materials-
Gold OA文章占比:
Gold OA文章占比是指一个总体中金色OA文章数量占总体文章数量的比重。OA期刊的文章主要通过金色通道(Gold road,也称为Gold OA,即期刊官网)和绿色通道(Green road,或Green OA)实现开放获取。金色通道是开放获取期刊通过自己的官网来实现的,而绿色通道是通过把文章自存档于机构知识库(Institutional Repositories,比如哈佛大学学术库DASH)或学科知识库中来实现。
100.00%
原创研究文献占比:
100.00%
SCI收录类型:
Directory of Open Access Journals (DOAJ)
期刊官网:
期刊介绍英文:
Discover Materials is part of the Discover journal series committed to providing a streamlined submission process, rapid review and publication, and a high level of author service at every stage. It is a broad, open access journal publishing research from across all fields of materials research. Discover Materials covers all areas where materials are activators for innovation and disruption, providing cutting-edge research findings to researchers, academicians, students, and engineers. It considers the whole value chain, ranging from fundamental and applied research to the synthesis, characterisation, modelling and application of materials. Moreover, we especially welcome papers connected to so-called ‘green materials’, which offer unique properties including natural abundance, low toxicity, economically affordable and versatility in terms of physical and chemical properties. They are the activators of an eco-sustainable economy serving all innovation sectors. Indeed, they can be applied in numerous scientific and technological applications including energy, electronics, building, construction and infrastructure, materials science and engineering applications and pollution management and technology. For instance, biomass-based materials can be developed as a source for biodiesel and bioethanol production, and transformed into advanced functionalized materials for applications such as the transformation of chitin into chitosan which can be further used for biomedicine, biomaterials and tissue engineering applications. Green materials for electronics are also a key vector concerning the integration of novel devices on conformable, flexible substrates with free-of-form surfaces for innovative product development. We also welcome new developments grounded on Artificial Intelligence to model, design and simulate materials and to gain new insights into materials by discovering new patterns and relations in the data.
CiteScore:
引用分数(英语:CiteScore,CS)是一种用来反映学术期刊最近发表文章“年平均被引用次数”的衡量指标。该指标由Elsevier于 2016 年 12 月推出,以替代常用的JCR影响因子(由Clarivate计算)。 CiteScore是Scopus中系列期刊指标的一部分,包括 SNIP(源文档标准化影响),SJR (SClmago杂志排名),引用文档计数以及引用百分比。
CiteScoreSJRSNIPCiteScore排名
3.3
学科
排名
百分位
大类:Materials Science
小类:Metals and Alloys
62 / 176
65%
大类:Materials Science
小类:Materials Science (miscellaneous)
84 / 196
57%
大类:Materials Science
小类:Electronic, Optical and Magnetic Materials
157 / 284
44%
大类:Materials Science
小类:Biomaterials
93 / 137
32%

发文信息

历年发表

年文章数是指每年6月SCI发布的IF数据中所提供的上一年全年发文数量。如2018年7月-2019年6月,显示的是2017年的发文数.对极少数热门期刊,我们会在1月份更新为最新一年的发文数。
2020年2021年2022年
31810
出版语言:
English
出版国家(地区):
Switzerland
审稿时长:
23 days
投稿网址:
出版商:
Springer Nature
编辑部地址:
Springer Nature Switzerland AG
PubMed链接:

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Discover Materials - 最新文献

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Product classes characterization at micro-scale level applied to granular wastes fractions < 20 mm: a case-study

Pub Date : 2024-07-18 DOI: 10.1007/s43939-024-00092-8 Daniela Rizzo, Anna Somigliana, Stefania Marmai, Debora Cusumano, Laura Clerici, Marco Volante

Pressureless sintering kinetics analysis of Ti3SiC2 and Ti2AlC powdered MAX phases

Pub Date : 2024-07-16 DOI: 10.1007/s43939-024-00098-2 J. M. Córdoba Gallego
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