Li Tao, Sheng Yu-Jing, Sun Xiao-Li, Wan Wen-Ming, Liu Yanru, Qian Qingrong, Chen Qinghua
Fujian Key Laboratory of Pollution Control & Resource Reuse, Engineering Research Center of Polymer Green Recycling of Ministry of Education, College of Environmental Science and Engineering, Fujian Normal University, Fuzhou 350007, China.
State Key Laboratory of Structural Chemistry, Key Laboratory of Coal to Ethylene Glycol and Its Related Technology, Center for Excellence in Molecular Synthesis, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, 155 West Yangqiao Road, Fuzhou 350002, China.
Polymers (Basel). 2022 May 16;14(10):2025. doi: 10.3390/polym14102025.
The isosteric replacement of C═C by B-N units in conjugated organic systems has recently attracted tremendous interest due to its desirable optical, electronic and sensory properties. Compared with BN-, NBN- and BNB-doped polycyclic aromatic hydrocarbons, NBN-embedded polymers are poised to expand the diversity and functionality of olefin polymers, but this new class of materials remain underexplored. Herein, a series of polymers with BNB-doped π-system as a pendant group were synthesized by reversible addition-fragmentation chain transfer (RAFT) polymerization from NBN-containing vinyl monomers, which was prepared via intermolecular dehydration reaction between boronic acid and diamine moieties in one pot. Poly{2-(4-Vinylphenyl)-2,3-dihydro-1H-naphtho[1,8-de][1,3,2]diazaborinine} (P1), poly{N-(4-(1H-naphtho[1,8-de][1,3,2]diazaborinin-2(3H)-yl)phenyl)acrylamide} (P2) and poly{N-(4-(1H-benzo[d][1,3,2]diazaborol-2(3H)-yl)phenyl)acrylamide} (P3) were successfully synthesized. Their structure, photophysical properties and application in metal ion detection were investigated. Three polymers exhibit obvious solvatochromic fluorescence. As fluorescent sensors for the detection of Fe and Cr, P1 and P2 show excellent selectivity and sensitivity. The limit of detection (LOD) achieved by Fe is 7.30 nM, and the LOD achieved by Cr is 14.69 nM, which indicates the great potential of these NBN-embedded polymers as metal fluorescence sensors.
由于其理想的光学、电子和传感特性,在共轭有机体系中用硼氮(B-N)单元对等电子体取代碳碳双键(C═C)最近引起了极大的关注。与硼氮(BN-)、氮硼氮(NBN-)和硼氮硼(BNB-)掺杂的多环芳烃相比,嵌入氮硼氮(NBN)的聚合物有望扩展烯烃聚合物的多样性和功能性,但这类新型材料仍未得到充分探索。在此,通过可逆加成-断裂链转移(RAFT)聚合反应,从含氮硼氮(NBN)的乙烯基单体合成了一系列以硼氮硼(BNB)掺杂的π-体系作为侧基的聚合物,该含氮硼氮(NBN)的乙烯基单体是通过硼酸和二胺部分在一锅法中的分子间脱水反应制备的。成功合成了聚{2-(4-乙烯基苯基)-2,3-二氢-1H-萘并[1,8-de][1,3,2]二氮杂硼烷}(P1)、聚{N-(4-(1H-萘并[1,8-de][1,3,2]二氮杂硼烷-2(3H)-基)苯基)丙烯酰胺}(P2)和聚{N-(4-(1H-苯并[d][1,3,2]二氮杂硼烷-2(3H)-基)苯基)丙烯酰胺}(P3)。研究了它们的结构、光物理性质及其在金属离子检测中的应用。三种聚合物表现出明显的溶剂化显色荧光。作为检测铁(Fe)和铬(Cr)的荧光传感器,P1和P2表现出优异的选择性和灵敏度。铁(Fe)的检测限(LOD)为7.30 nM,铬(Cr)的检测限为14.69 nM,这表明这些嵌入氮硼氮(NBN)的聚合物作为金属荧光传感器具有巨大的潜力。