Liao Chenglong, Gong Yanjun, Che Yanxue, Ji Hongwei, Liu Bing, Zang Ling, Che Yanke, Zhao Jincai
Key Laboratory of Photochemistry, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2024 Jul 6;15(1):5668. doi: 10.1038/s41467-024-49995-3.
The creation of well-defined hollow two-dimensional structures from small organic molecules, particularly those with controlled widths and numbers of segments, remains a formidable challenge. Here we report the fabrication of the well-defined concentric hollow two-dimensional platelets with programmable widths and numbers of segments through constructing a concentric multiblock two-dimensional precursor followed by post-processing. The fabrication of concentric multi-hexagons two-dimensional platelets is realized by the alternative heteroepitaxial growth of two donor-acceptor molecules. Upon ultraviolet irradiation, one of the two donor-acceptor molecules can be selectively oxidized by singlet oxygen generated during the process, and the oxidized product becomes more soluble due to increased polarity. This allows for selective removal of the oxidized segments simply by solvent dissolution, yielding hollow multiblock two-dimensional structures. The hollow two-dimensional platelets can be utilized as templates to lithograph complex electrodes with precisely controlled gap sizes, thereby offering a platform for examining the optoelectronic performance of functional materials.
从小有机分子,特别是那些具有可控宽度和段数的分子中制备定义明确的中空二维结构,仍然是一项艰巨的挑战。在此,我们报告通过构建同心多嵌段二维前驱体并进行后处理,制备出具有可编程宽度和段数的定义明确的同心中空二维片材。通过两种给体-受体分子的交替异质外延生长实现了同心多六边形二维片材的制备。在紫外线照射下,两种给体-受体分子中的一种可以被该过程中产生的单线态氧选择性氧化,并且氧化产物由于极性增加而变得更易溶解。这使得仅通过溶剂溶解就可以选择性地去除氧化段,从而得到中空多嵌段二维结构。这些中空二维片材可以用作模板来光刻具有精确控制间隙尺寸的复杂电极,从而为研究功能材料的光电性能提供一个平台。