Gerein Kevin, Unmu Dzujah Diyan, Yu Hongde, Hauke Frank, Heine Thomas, Hirsch Andreas, Wei Tao
Department of Chemistry and Pharmacy & Center of Advanced Materials and Processes (ZMP), Friedrich-Alexander-University of Erlangen-Nürnberg, Nikolaus-Fiebiger-Strasse 10, 91058, Erlangen, Germany.
Faculty of Chemistry and Food Chemistry, Technische Universität Dresden, Bergstrasse 66c, 01069, Dresden, Germany.
Angew Chem Int Ed Engl. 2024 Dec 9;63(50):e202414090. doi: 10.1002/anie.202414090. Epub 2024 Nov 9.
The emerging laser writing represents an efficient and promising strategy for covalent two dimensional (2D)-patterning of graphene yet remains a challenging task due to the lack of applicable reagents. Here, we report a versatile approach for covalent laser patterning of graphene using a family of trivalent organic iodine compounds as effective reagents, allowing for the engraving of a library of functionalities onto the graphene surface. The relatively weak iodine-centered bonds within these compounds can readily undergo laser-induced cleavage to in situ generate radicals localized to the irradiated regions for graphene binding, thus completing the covalent 2D-structuring of this 2D-film. The tailor-made attachment of distinct functional moieties with varying electrical properties as well as their thermally reversible binding manner enables programming the surface properties of graphene. With this delicate strategy the bottleneck of a limited scope of functional groups patterned onto the graphene surface upon laser writing is tackled.
新兴的激光写入技术是一种用于石墨烯共价二维(2D)图案化的高效且有前景的策略,但由于缺乏适用的试剂,仍然是一项具有挑战性的任务。在此,我们报道了一种通用方法,使用一族三价有机碘化合物作为有效试剂对石墨烯进行共价激光图案化,从而能够在石墨烯表面刻写一系列功能基团。这些化合物中相对较弱的以碘为中心的键能够很容易地发生激光诱导裂解,原位生成定位于辐照区域的自由基以与石墨烯结合,从而完成这种二维薄膜的共价二维结构化。通过定制连接具有不同电学性质的独特功能基团及其热可逆结合方式,可以对石墨烯的表面性质进行编程。凭借这种精细的策略,解决了激光写入时在石墨烯表面图案化功能基团范围有限这一瓶颈问题。