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Molecular Layer-by-Layer Self-Assembly and Mercury Sensing Characteristics of Novel Brush Polymers Bearing Thymine Moieties

机译:新型含胸腺嘧啶刷聚合物的分子层层自组装和汞传感特性

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Two new brush polyoxyethylenes bearing thymine moieties at the bristle ends have been synthesized as model polymers in which the chemical loading of the thymine functional group into the polymer is maximized: poly(oxy(ll-thyminoacetyloxyundecylthiomethyl)ethylene) (PECH(S)-T) and poly(oxy(11-thyminoacetyloxyundecylsulfonylmethyl)-ethylene) (PECH(SO2)-T). These brush polymers are thermally stable up to around 225 °C, and their glass transitions occur in the range 23—27 °C, but they have significantly different properties despite the similarity of their chemical structures. In particular, PECH(SO2)-T films exhibit better performance in sensing mercury ions than PECH(S)-T films. These differences were found to originate in the differences between their morphological structures. The PECH(SO2)-T film has a multi-bilayer structure without interdigitation, in which the layers stack along the out-of-plane of the film and provide a thymine-rich surface. In contrast, the PECH(S)-T film is amorphous with a relatively low population of thymine moieties at the surface. This study demonstrated that a thymine-rich surface is required for recyclable thymine-based polymers to provide highly improved sensitivity and selectivity as well as full reversibility in the sensing of mercury ions. A thymine-rich surface can be achieved with a brush polymer bearing thymine moieties that can self-assemble into a multi-bilayer structure. Because of the thymine-rich surface, the PECH(SCO2)-T thin films even in only 6 nm thickness demonstrate the detection of mercury ions in aqueous solutions with a detection limit of 10~6 M.
机译:合成了两个新的在刷毛末端带有胸腺嘧啶部分的刷式聚氧乙烯,作为模型聚合物,其中使胸腺嘧啶官能团在聚合物中的化学负载最大化: )和聚(氧(11-胸苷乙酰氧基十一烷基磺酰基甲基)-乙烯)(PECH(SO2)-T)。这些刷子聚合物在高达225°C的温度下具有热稳定性,并且它们的玻璃化转变温度在23-27°C范围内,但是尽管它们的化学结构相似,但它们具有明显不同的性能。特别是,PECH(SO2)-T膜在感测汞离子方面表现出比PECH(S)-T膜更好的性能。发现这些差异源自它们的形态结构之间的差异。 PECH(SO2)-T薄膜具有多层结构,没有相互交叉,其中各层沿薄膜的平面堆叠,并提供富含胸腺嘧啶的表面。相反,PECH(S)-T膜是无定形的,表面上的胸腺嘧啶部分相对较低。这项研究表明,可回收的基于胸腺嘧啶的聚合物需要富含胸腺嘧啶的表面,以提供高度改善的灵敏度和选择性,以及在检测汞离子时具有完全可逆性。富含胸腺嘧啶的表面可以通过带有可自组装成多层结构的胸腺嘧啶部分的刷式聚合物实现。由于具有丰富的胸腺嘧啶表面,即使仅6 nm厚的PECH(SCO2)-T薄膜也能检测水溶液中的汞离子,其检测极限为10〜6M。

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