PNSMI News | CiteScore 8.6 再创佳绩

学术   2024-07-03 15:34   北京  


PNSMI News


2024年6月6日,2023年度Elsevier CiteScore指标正式发布。CiteScore 2023 对收录于Scopus数据库的同行评审期刊、系列图书、会议论文和行业期刊物等出版物的影响力进行了最新评估。



再创佳绩


由中国材料研究学会主办,Elsevier出版社出版的期刊Progress in Natural Science: Materials International(PNSMI)最新CiteScore为8.6。与去年(CiteScore=6.6)相比,实现30.2%增长。在Materials Science:General Materials Science分区的463本期刊中排名第92位,首次跻身该领域前20%!


封面文章精选

01

 Impacts of local chemical ordering on the primary radiation damage in Cr–Fe–Ni multi-principal element alloys

 引用信息


Leqing Liu, Wenyue Li, Hui Wang, Yuan Wu, Suihe Jiang, Xiaobin Zhang, Xiongjun Liu, Zhaoping Lu, Impacts of local chemical ordering on the primary radiation damage in Cr–Fe–Ni multi-principal element alloys, Progress in Natural Science: Materials International, Volume 34, Issue 1, 2024, Pages 178-186


https://doi.org/10.1016/j.pnsc.2024.02.007.


02

 An improved laser flash method for thermal conductivity measurement of molten salts

 引用信息


Shiyan Dong, Mingzhen Zhang, Kaiyuan Jin, Ronggui Yang, An improved laser flash method for thermal conductivity measurement of molten salts, Progress in Natural Science: Materials International,

Volume 34, Issue 2, 2024, Pages 345-353


https://doi.org/10.1016/j.pnsc.2024.03.006

03

 Plane-controlled growth strategy improves electrochemical performance of cobalt-free LiNi0.9Mn0.1O2 cathode

引用信息


Hao Tong, Xun Yuan, Ningbo Qin, Yaocong Han, Yan Cheng, Fangli Ji, Ruirui Tuo, Changlang Liang, Yi Wang, Qilin Tong, Zhaozhe Yu, Plane-controlled growth strategy improves electrochemical performance of cobalt-free LiNi0.9Mn0.1O2 cathode, Progress in Natural Science: Materials International, Volume 34, Issue 3, 2024, Pages 569-577


https://doi.org/10.1016/j.pnsc.2024.05.005.

04

 Constructing nitrided aluminum metal skeleton to improve the reversibility and cyclicity of Si film electrode

引用信息


Jiali Tong, Tingfeng Guan, Qilin Tong, Yan Cheng, Zhaozhe Yu, Constructing nitrided aluminum metal skeleton to improve the reversibility and cyclicity of Si film electrode, Progress in Natural Science: Materials International, Volume 33, Issue 6, 2023, Pages 789-796


https://doi.org/10.1016/j.pnsc.2024.01.001

05

 Nanoscale zero-valent iron integrated with bioreactor for recalcitrant antimony-Congo red dyeing wastewater treatment

 引用信息


Jing Liu, Airong Liu, Yi Wei, Jiahui Fu, Wei-xian Zhang, Nanoscale zero-valent iron integrated with bioreactor for recalcitrant antimony-Congo red dyeing wastewater treatment, Progress in Natural Science: Materials International,

Volume 33, Issue 5, 2023, Pages 569-574


https://doi.org/10.1016/j.pnsc.2023.12.008


高引文章精选

01

 Progress in electrode materials for the industrialization of sodium-ion batteries

天津大学陈亚楠团队

 引用信息

Zhaoxin Guo, Guangdong Qian, Chunying Wang, Ge Zhang, Ruofan Yin, Wei-Di Liu, Rui Liu, Yanan Chen,

Progress in electrode materials for the industrialization of sodium-ion batteries, Progress in Natural Science: Materials International, Volume 33, Issue 1, 2023, Pages 1-7


https://doi.org/10.1016/j.pnsc.2022.12.003.

02

 Ultrafastly activated needle coke as electrode material for supercapacitors

天津大学胡文彬团队

 引用信息


Cuihua Zeng, Cunpeng Duan, Zhaoxin Guo, Zhedong Liu, Shuming Dou, Qunyao Yuan, Peng Liu, Jingchao Zhang, Jiawei Luo, Weidi Liu, Jinfeng Zhang, Yanan Chen, Wenbin Hu, Ultrafastly activated needle coke as electrode material for supercapacitors, Progress in Natural Science: Materials International, Volume 32, Issue 6, 2022, Pages 786-792


https://doi.org/10.1016/j.pnsc.2022.10.008.

03

 Core-shell structure nanoprecipitates in Fe-xCu-3.0Mn-1.5Ni-1.5Al alloys: A phase field study

中北大学赵宇宏团队

引用信息


Yuhong Zhao, Yuanyang Sun, Hua Hou, Core-shell structure nanoprecipitates in Fe-xCu-3.0Mn-1.5Ni-1.5Al alloys: A phase field study, Progress in Natural Science: Materials International, Volume 32, Issue 3, 2022, Pages 358-368


https://doi.org/10.1016/j.pnsc.2022.04.001.

04

 Highly stretchable, sensitive and wide linear responsive fabric-based strain sensors with a self-segregated carbon nanotube (CNT)/Polydimethylsiloxane (PDMS) coating

西南石油大学向东团队

 引用信息


Libing Liu, Xuezhong Zhang, Dong Xiang, Yuanpeng Wu, Dan Sun, Jiabin Shen, Menghan Wang, Chunxia Zhao, Hui Li, Zhenyu Li, Ping Wang, Yuntao Li, Highly stretchable, sensitive and wide linear responsive fabric-based strain sensors with a self-segregated carbon nanotube (CNT)/Polydimethylsiloxane (PDMS) coating, Progress in Natural Science: Materials International, Volume 32, Issue 1, 2022, Pages 34-42,


https://doi.org/10.1016/j.pnsc.2021.10.012.

05

 Green economy and waste management: An inevitable plan for materials science

里斯本新大学Rodrigo Martins团队   

引用信息


Suman Nandy, Elvira Fortunato, Rodrigo Martins, Green economy and waste management: An inevitable plan for materials science,

Progress in Natural Science: Materials International, Volume 32, Issue 1, 2022, Pages 1-9, ISSN 1002-0071,


https://doi.org/10.1016/j.pnsc.2022.01.001



PNSMI的发展,离不开每一位作者对期刊的信任,读者对期刊的支持,审稿人对期刊稿件的严格审查,编委团队对期刊发展的不懈努力。在此,PNSMI编辑部向一直以来对期刊发展提供指导与帮助的各位专家学者、作者、读者、审稿人和编委团队表达衷心的感谢。我们将牢记大家的贡献与信任,继续坚守初心、勇往直前,发表高质量科学研究成果,支持优秀学术人才成长,共同创造更辉煌的成就!


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期刊简介


Progress in Natural Science: Materials International(PNSMI)由中国材料研究学会主办,是一本综合类英文SCI学术期刊,刊登材料科学领域的基础研究和应用基础研究方面的高水平、有创造性和重要意义的最新研究成果。

2023年最新影响因子4.8,分区为中科院材料科学二区。入选2019年中国科技期刊卓越行动计划,2022、2023连续两年获评中国最具国际影响力学术期刊。


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Progress in Natural Science: Materials International期刊是中国材料研究学会主办的聚焦新材料领域的高水平期刊,爱思唯尔负责全球发行出版。欢迎关注公众号,获取期刊最新文章动态。
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