Low-cost and stable SFX-based semiconductor materials in organic optoelectronics

Chen-Sheng Li, Bao-Yi Ren, Ya-Guang Sun
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引用次数: 1

Abstract

In the progress of realizing the commercialization of organic optoelectronic materials, the four basic coherent factors are stability, cost, performance, and processability, all which determine the results of device applications. Spiro[fluorene-9,9′-xanthene] (SFX) has been becoming the robust building-block that fulfilling the practical requirements due to its key features of non-planarity, one-pot facile availability, well-defined quality assurance as well as performance behaviors. In this review, we introduce the SFX and its analogues, including synthesis, molecular design, device performance, and structure-property relationship, in the applications of organic light-emitting diodes (OLEDs), organic photovoltaics, perovskite solar cells (PSCs) and others. Furthermore, emitters or hosts for OLED and hole transport materials for PSCs are highlighted at the level of molecular configuration and film morphology. Tracing the thread from intrinsic photoelectric properties, molecular packing to optoelectronic application, the advantage of stability and low-cost of SFX-based materials are illuminated, and an outlook is given providing orientation for bring SFX into the fields of catalysis and energy chemistry in view of its binary conjugation and three-dimensional configuration.

Abstract Image

有机光电子学中低成本稳定的sfx基半导体材料
在实现有机光电材料商业化的过程中,四个基本的相干因素是稳定性、成本、性能和可加工性,所有这些都决定了器件应用的结果。Spiro[芴-9,9′-吨](SFX)由于其非平面性、一锅易用性、明确的质量保证和性能行为等关键特征,已成为满足实际要求的稳健构建块。在这篇综述中,我们介绍了SFX及其类似物,包括合成、分子设计、器件性能和结构-性能关系,在有机发光二极管(OLED)、有机光伏、钙钛矿太阳能电池(PSCs)等方面的应用。此外,OLED的发射体或主体以及PSC的空穴传输材料在分子构型和膜形态水平上得到了强调。从本征光电性质、分子封装到光电应用,阐述了SFX基材料的稳定性和低成本优势,并从其二元共轭和三维构型的角度展望了SFX在催化和能量化学领域的应用方向。
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CiteScore
4.20
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