Authors
Prof. Wei Li
Nankai University
School of Materials Science and
Engineering
38 Tongyan Road
300350 Tianjin
China
Dr. Alessandro Stroppa
CNR-SPIN
University of L'Aquila
c/o Department of Physical and
Chemical Science
Via Vetoio
67100 Coppito (AQ)
Italy
Prof. Zhe-Ming Wang
Peking University
College of Chemistry and Molecular
Engineering
Chengfu Road 292
100871 Beijing
China
Prof. Song Gao
Peking University
College of Chemistry and Molecular
Engineering
ChengFu Road 292
100871 Beijing
China
and
South China University of Technology
School of Chemistry and Chemical
Engineering
381 Wushan Road
510640 Guangzhou
China
Cover Images:
Hybrid Organic-Inorganic
Courtesy of Wei Li, Abstract alter
hintergrund © Pexels/9151
Bilder/Pixabay
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Print ISBN: 978-3-527-34431-4
ePDF ISBN: 978-3-527-34436-9
ePub ISBN: 978-3-527-34434-5
oBook ISBN: 978-3-527-34433-8
Hybrid organic–inorganic perovskites have attracted substantial interest during the past decade because of their chemical variability, structural diversity, and remarkable physical properties. However, to date, there has been no book that covers the synthesis, structures, and functionalities of these fascinating materials. This important book, by Wei Li, Alessandro Stroppa, Zhe-Ming Wang, and Song Gao, who are international leaders in the field, fills this gap by summarizing the recent advances in all the known 3D hybrid perovskite subclasses, which include halides, azides, formates, hypophosphites, dicyanamides, cyanides, dicyanometallates, and even some metal-free systems. It also presents a comprehensive account of their intriguing physical properties, including photovoltaic and optoelectronic properties, magnetism, dielectricity, ferroelectricity, ferroelasticity, and multiferroicity. Such a timely book will give readers a comprehensive summary of the currently known 3D hybrid perovskites and also illustrate the many opportunities that lie beyond the popular halide materials.
Santa Barbara, May 2020
Anthony K. Cheetham, KBE FRS
This book was supported by the National Natural Science Foundation of China (grant nos 21571072, 21671008, 21975132, and 21991143) and the Fundamental Research Funds for the Central Universities (no. 63196006). The authors are also grateful to Nankai University, CNR-SPIN, Peking University, and South China University of Technology for their financial support.