Lawrence Berkeley National Laboratory, Berkeley, California, 94720, USA.
Current address, 7644 Ambrose way, California, 95831, USA.
Chemphyschem. 2020 Nov 3;21(21):2368-2383. doi: 10.1002/cphc.202000564. Epub 2020 Oct 2.
Remarkable advances in technology have enabled the manipulation of individual molecules and the creation of molecular electronic devices utilizing single and ensemble molecules. Maturing the field of molecular electronics has led to the development of functional molecular devices, especially photoswitching or photochromic molecular junctions, which switch electronic properties under external light irradiation. This review introduces and summarizes the platforms for investigating the charge transport in single and ensemble photoswitching molecular junctions as well as the electronic properties of diverse photoswitching molecules such as diarylethene, azobenzene, dihydropyrene, and spiropyran. Furthermore, the article discusses the remaining challenges and the direction for moving forward in this area for future photoswitching molecular devices.
技术的显著进步使得操纵单个分子和利用单个及集合分子制造分子电子器件成为可能。分子电子学领域的不断发展,导致了功能性分子器件的开发,特别是光致开关或光致变色分子结,它们在外光照射下可以切换电子性质。本综述介绍并总结了研究单个和集合光致开关分子结中的电荷输运以及各种光致开关分子(如二芳基乙烯、偶氮苯、二氢苉和螺吡喃)的电子性质的平台。此外,本文还讨论了这一领域中未来光致开关分子器件的一些仍待解决的问题和前进方向。