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JMAT 介电储能材料特刊上线啦!

Journal of Materiomics 2022年介电储能材料特刊上线啦!本期特刊特邀美国宾夕法尼亚州立大学王庆教授、澳大利亚卧龙岗大学张树君教授、华中科技大学张光祖教授担任特邀编辑。本期共刊出9篇精选佳作。您可以点击文末的“阅读全文”随时随地免费获取全文!


特 邀 编 辑

Prof. 

Qing Wang

The Pennsylvania State University, USA

E-mail: wang@matse.psu.edu

Prof. 

Shujun Zhang

University of Wollongong, Australia

E-mail: shujun@uow.edu.au

Prof. 

Guangzu Zhang

Huazhong University of Science and Technology, China

E-mail: zhanggz@hust.edu.cn


编 者 按

Dielectric materials for electrical energy storage

用于电能存储的介电材料

能源是社会发展的首要驱动力。能源转换和存储技术的进步对人类文明的进步至关重要。作为对具有高电荷存储能力的电池的补充,介电电容器拥有无可比拟的充放电率和功率密度。介电电容器在能量密度和放电效率上的突破有利于尺寸、重量和成本的降低,从而满足电子和电力系统设备的实现化、小型化和集成化。为此,需横跨材料科学与工程、化学、电气工程和应用物理学学科界限,以改善介电材料的电容性能。在Journal of Materiomics上发布的本期特刊重点介绍了介电储能材料,特别是铁电和反铁电陶瓷的最新发展及应用。

美国宾夕法尼亚州立大学王庆教授、澳大利亚卧龙岗大学张树君教授、华中科技大学张光祖教授

Guangzu Zhang, Shujin Zhang, Qing Wang*

DOI: 10.1016/j.jmat.2022.04.001

精 选 文 章

1. Research article

南京理工大学张骥教授和南京航空航天大学王婧副教授团队

Novel lead-free NaNbO3-based relaxor antiferroelectric ceramics with ultrahigh energy storage density and high efficiency

具有超高储能密度和高效率的新型无铅NaNbO3基弛豫反铁电陶瓷

Jie Jiang, Xiongjie Li, Ling Li, Shun Guo, Ji Zhang*, Jing Wang**, Heguo Zhu, Yiping Wang and Shan-Tao Zhang

Volume 8, Issue 2, pp. 295-301


2. Research article

安徽工程大学左如忠教授团队

Achieving stable relaxor antiferroelectric P phase in NaNbO3-based lead-free ceramics for energy-storage applications

在NaNbO3基无铅陶瓷中实现稳定的弛豫反铁电P相用于储能应用

Aiwen Xie, Jian Fu and Ruzhong Zuo*

Volume 8, Issue 3, pp. 618-626


3. Research article

宁波大学潘仲彬教授、刘进军教授团队

Enhanced energy-storage performance in BNT-based lead-free dielectric ceramics via introducing SrTi0.875Nb0.1O3

通过引入SrTi0.875Nb0.1O3增强BNT基无铅介电陶瓷的储能性质

Lukang Wu, Luomen Tang, Yizan Zhai, Yiling Zhang, Jianjian Sun, Di Hu, Zhongbin Pan*, Zhen Su**, Yang Zhang and Jinjun Liu

Volume 8, Issue 3, pp. 537-544


5. Research article

西安交通大学靳立教授、严岩副教授团队

Enhanced antiferroelectric-like relaxor ferroelectric characteristic boosting energy storage performance of (Bi0.5Na0.5)TiO3-based ceramics via defect engineering

通过缺陷工程增强反铁电类弛豫铁电特性并提升(Bi0.5Na0.5)TiO3基陶瓷的储能性能

Leiyang Zhang, Ruiyi Jing, Yunyao Huang, Qingyuan Hu, D.O. Alikin, V. Ya Shur, Jinghui Gao, Xiaoyong Wei, Ling Zhang, Gang Liu, Yan Yan** and Li Jin*

Volume 8, Issue 3, pp. 527-536


5. Research article

内蒙古科技大学郝喜红教授、李雍副教授团队

Flexible multilayer lead-free film capacitor with high energy storage performances via heterostructure engineering

通过异质结构工程制备具有高储能性能的柔性多层无铅薄膜电容器

Ningning Sun, Jinhua Du, Ye Zhao, Chunxiao Lu, Pei Han, Yong Li*, Qiwei Zhang and Xihong Hao**

Volume 8, Issue 4, pp. 772-780


7. Research article

同济大学翟继卫教授、沈波副教授团队

Excellent energy storage performance of niobate-based glass-ceramics via introduction of nucleating agent

通过引入成核剂使铌酸盐基玻璃陶瓷具有优异的储能性能

Changshuai Liu, Shufeng Xie, Hairui Bai, Fei Yan, Tongtong Fu, Bo Shen** and Jiwei Zhai*

Volume 8, Issue 4, pp. 763-771


7. Research article

广西大学罗能能教授、彭修宁教授、桂林理工大学胡长征教授团队

Phase engineering in NaNbO3 antiferroelectrics for high energy storage density

用于高储能密度的NaNbO3反铁电体的相工程

Zhengu Chen, Shuaifei Mao, Li Ma, Gengguang Luo, Qin Feng, Zhenyong Cen, Fujita Toyohisa, Xiuning Peng**, Laijun Liu, Huanfu Zhou, Changzheng Hu andNengneng Luo*

Volume 8, Issue 4, pp. 753-762


8. Review article

美国洛基公司Sergey I. Shkuratov团队

A review of ferroelectric materials for high power devices

用于高功率器件的铁电材料的综述

Sergey I. Shkuratov* and Christopher S. Lynch

Volume 8, Issue 4, pp. 739-752


9. Research article

澳大利亚卧龙岗大学张树君教授团队

NaNbO3 modified BiScO3-BaTiO3 dielectrics for high-temperature energy storage applications

用于高温储能应用的NaNbO3改性BiScO3-BaTiO3介电材料

Jincymol Joseph, Zhenxiang Cheng and Shujun Zhang*

Volume 8, Issue 4, pp. 731-738

Journal of Materiomics(JMAT),由中国硅酸盐学会主办。该刊引领材料学科发展前沿,注重报道以材料设计、制备、表征及应用技术为主线的系统性前沿研究成果。点击文末“阅读全文“可免费获取所有论文全文
  Journal of Materiomics 入选首批中国科技期刊卓越行动计划(2020年度评估为优秀),被SCI和Scopus收录影响因子8.589(Materials Science, Multidisciplinary;Physics,Applied;Chemistry,Physical均位于Q1分区),Citescore为9.6。

  The Journal of Materiomics is indexed by SCI  (IF=8.589, rank in Q1 of Materials Science, Multidisciplinary;Physics,Applied;Chemistry,Physicaland Scopus (Citescore 9.6), aims to provide a continuous forum for the dissemination of research in the general field of materials science, particularly systematic studies of the relationships among composition, processing, structure, property, and performance of advanced materials. Supported by the Chinese Ceramic Society, the Journal of Materiomics is a peer-reviewed open-access journal.

  For more information on submitting to Journal of Materiomics, Please read journal’s specific Guide for Author:

   https://www.journals.elsevier.com/journal-of-materiomics 
 
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