高起点新刊Interdisciplinary Materials(交叉学科材料)期刊2022年共出版4期,上线论文32篇,现推出2022年度论文合集“材料与新能源领域交叉(下)”,包含热电、太阳能电池方向的综述或研究论文,供各位能源领域相关研究方向的专家学者参考。
X. Tang, Z. Li, W. Liu, Q. Zhang, C. Uher. A comprehensive review on Bi2Te3‐based thin films: thermoelectrics and beyond. Interdiscip. Mater. 2022; 1(1): 88‐115. doi:10.1002/idm2.12009
Z. Shen, H. Liu, Y. Shen, J. Hu, L. Chen, C. Nan, Machine learning in energy storage materials. Interdiscip. Mater. 2022; 1(2): 175-195. doi:10.1002/idm2.12020
H. Kanda, V. D. Mihailetchi, M. E. Gueunier-Farret, J. Kleider, Z. Djebbour, J. Alvarez, B. Philippe, O. Isabella, M. R. Vogt, R. Santbergen, P. Schulz, F. Peter, M. Nazeeruddin, J. Connolly. Three‐terminal perovskite/integrated back contact silicon tandem solar cells under low light intensity conditions. Interdiscip. Mater. 2022; 1(1): 148‐156. doi:10.1002/idm2.12006
J. Jiang, J. Liu. Iron anode‐based aqueous electrochemical energy storage devices: recent advances and future perspectives. Interdiscip. Mater. 2022; 1(1): 116‐139. doi:10.1002/idm2.12007
C. Zheng, W. Chu, S. Fang, J. Tan, X. Wang, W. Guo. Materials for evaporation-driven hydrovoltaic technology. Interdiscip. Mater. 2022; 1(4): 449-470. doi: 10.1002/idm2.12033
Y. Xie, Q. Yao, Q. Xue, Z. Zeng, T. Niu, Y. Zhou, M. Zhuo, S. Tsang, H. Yip, Y. Cao. Subtle side chain modification of triphenylamine‐based polymer hole‐transport layer materials produces efficient and stable inverted perovskite solar cells. Interdiscip. Mater. 2022; 1(2): 281‐293. doi:10.1002/idm2.12023
Y. Mo, C. Wang, X. Zheng, P. Zhou, J. Li, X. Yu, K. Yang, X. Deng, H. Park, F. Huang, Y. Cheng. Nitrogen‐doped tin oxide electron transport layer for stable perovskite solar cells with efficiency over 23%. Interdiscip. Mater. 2022; 1(2): 309‐315. doi:10.1002/idm2.12022
W. Tian, P. Song, Y. Zhao, L. Shen, K. Liu, L. Zheng, Y. Luo, C. Tian, L. Xie, Z. Wei. Monolithic bilayered In2O3 as an efficient interfacial material for high-performance perovskite solar cells. Interdiscip. Mater. 2022; 1(4): 526-536. doi: 10.1002/idm2.12047
Z. Liu, T. Hong, L. Xu, S. Wang, X. Gao, C. Chang, X. Ding, Y. Xiao, L. Zhao. Lattice expansion enables interstitial doping to achieve a high average ZT in n-type PbS. Interdiscip. Mater. doi: 10.1002/idm2.12056
Interdisciplinary Materials(交叉学科材料)是由Wiley出版集团与武汉理工大学联合创办的开放获取式高水平学术期刊。主编为张清杰院士和傅正义院士。30位国际杰出学者和42位两院院士作为期刊的编辑委员会委员。Interdisciplinary Materials 是国际上聚焦材料与其它学科交叉前沿发起出版的首本“交叉学科材料”领域高水平期刊,旨在发表材料学科与数理、化学、力学、生物、能源、环境、信息等学科交叉研究的最新成果。
· 2022年1月首发,前三年完全免费发表
· 2022年6月被DOAJ数据库收录
· 2022年9月入选“中国科技期刊卓越行动计划高起点新刊”
https://onlinelibrary.wiley.com/journal/2767441X
https://mc.manuscriptcentral.com/intermat
im@whut.edu.cn
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