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Title: Optically Controlled Magnetization and Magnetoelectric Effect in Organic Multiferroic Heterojunction

 [1];  [1];  [1];  [2];  [3];  [1];  [1]
  1. School of Physics State Key Laboratory of Crystal Materials Shandong University Jinan 250100 China
  2. School of Physics State Key Laboratory of Crystal Materials Shandong University Jinan 250100 China, ARC Centre of Excellence in Exciton Science School of Chemistry The University of Melbourne Parkville Victoria 3010 Australia
  3. Department of Mechanical Engineering and Temple Materials Institute Temple University Philadelphia PA 19122 USA
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Publisher's Accepted Manuscript
Journal Name:
Advanced Optical Materials
Additional Journal Information:
Journal Name: Advanced Optical Materials Journal Volume: 5 Journal Issue: 24; Journal ID: ISSN 2195-1071
Wiley Blackwell (John Wiley & Sons)
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Wei, Mengmeng, Niu, Mengsi, Bi, Pengqing, Hao, Xiaotao, Ren, Shenqiang, Xie, Shijie, and Qin, Wei. Optically Controlled Magnetization and Magnetoelectric Effect in Organic Multiferroic Heterojunction. Germany: N. p., 2017. Web.
Wei, Mengmeng, Niu, Mengsi, Bi, Pengqing, Hao, Xiaotao, Ren, Shenqiang, Xie, Shijie, & Qin, Wei. Optically Controlled Magnetization and Magnetoelectric Effect in Organic Multiferroic Heterojunction. Germany.
Wei, Mengmeng, Niu, Mengsi, Bi, Pengqing, Hao, Xiaotao, Ren, Shenqiang, Xie, Shijie, and Qin, Wei. Wed . "Optically Controlled Magnetization and Magnetoelectric Effect in Organic Multiferroic Heterojunction". Germany.
title = {Optically Controlled Magnetization and Magnetoelectric Effect in Organic Multiferroic Heterojunction},
author = {Wei, Mengmeng and Niu, Mengsi and Bi, Pengqing and Hao, Xiaotao and Ren, Shenqiang and Xie, Shijie and Qin, Wei},
abstractNote = {},
doi = {10.1002/adom.201700644},
journal = {Advanced Optical Materials},
number = 24,
volume = 5,
place = {Germany},
year = {2017},
month = {10}

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