HKUST-Shenzhen Research Institute , No. 9 Yuexing first RD, South Area, Hi-tech Park , Nanshan , Shenzhen 518057 , P. R. China.
Department of Chemistry, Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, Division of Life Science , Institute of Advanced Study and Department of Chemical and Biological Engineering , Hong Kong , SAR.
J Am Chem Soc. 2019 Sep 18;141(37):14712-14719. doi: 10.1021/jacs.9b06493. Epub 2019 Sep 6.
Polymers containing rich chalcogen elements are rarely reported due to the lack of facile synthesis methods. Herein, a novel multicomponent polymerization route toward chalcogen-rich polymers was introduced. A series of poly(vinyl sulfones) (PVSs) were synthesized at room temperature using readily prepared monomers. PVSs were generated with high regio- and stereo-selectivity in high yields (up to 92.3%). Rich chalcogen elements endowed PVSs with distingctive multifunctionalities. The PVSs possessed good solubility and film-forming ability. Their thin films exhibited outstanding refractive indices up to 1.8062 at 550.0 nm together with good optical transparency in the visible region. Thin films of some polymers can also be fabricated into well-resolved fluorescent photopatterns by photolithography. Thanks to the unique redox properties of selenium, postmodification by oxidation reaction of P// successfully eliminates the caused heavy atom effect and endow resulting polymers with novel functionality as fluorescent bioprobes for cellular imaging.
由于缺乏简便的合成方法,含丰富硫属元素的聚合物很少有报道。本文介绍了一种新颖的多组分聚合方法来制备富硫属聚合物。使用易于制备的单体,在室温下合成了一系列聚(乙烯基砜)(PVS)。PVS 以高区域和立体选择性高产率(高达 92.3%)生成。丰富的硫属元素赋予 PVS 独特的多功能性。PVS 具有良好的溶解性和成膜能力。它们的薄膜在 550.0nm 处表现出高达 1.8062 的出色折射率以及在可见光区域的良好光学透明度。一些聚合物的薄膜也可以通过光刻技术制成分辨率良好的荧光光图案。由于硒的独特氧化还原特性,通过氧化反应对 P//进行后修饰成功消除了重原子效应,并赋予所得聚合物作为细胞成像的新型荧光生物探针的功能。