书目名称 | Optoelectronic Properties of Organic Semiconductors |
副标题 | Charge Generation an |
编辑 | Nasim Zarrabi |
视频video | |
概述 | Explores the optoelectronic properties of organic semiconductors relevant for new photovoltaic devices.Features a set of impressive experimental results supported by a strong and novel theoretical arg |
丛书名称 | SpringerBriefs in Materials |
图书封面 |  |
描述 | This book focuses on organic semiconductors with particular attention paid to their use as photovoltaic devices. It addresses a fundamental and hitherto overlooked concept in the field of organic optoelectronics, namely the role that sub-gap states play in the performance of organic semiconducting devices. From a technological point of view, organic semiconductor-based devices are of significant interest due to their lightweight, ease of processability, conformal flexibility, and potentially low cost and low embodied energy production. Motivated by these rather unique selling points, the performance of organic semiconductors has been a subject of multidisciplinary study for more than 60 years with steady progress in applications such as solar cells, transistors, light emitting diodes, and various sensors..The book begins with a review of the main electro-optical phenomena in organic solar cells and presents a new method for measuring exciton diffusion lengths based on a low-quencher-content device structure. Furthermore, the book reveals how mid-gap trap states are a universal feature in organic semiconductor donor–acceptor blends, unexpectedly contributing to charge generation and |
出版日期 | Book 2022 |
关键词 | Optoelectronic Devices; OLED Displays; Organic Semiconductors; Ordered and Disordered Semiconductors; Or |
版次 | 1 |
doi | https://doi.org/10.1007/978-3-030-93162-9 |
isbn_softcover | 978-3-030-93161-2 |
isbn_ebook | 978-3-030-93162-9Series ISSN 2192-1091 Series E-ISSN 2192-1105 |
issn_series | 2192-1091 |
copyright | The Author(s), under exclusive license to Springer Nature Switzerland AG 2022 |