A Zn2+/ UV-inspired molecular logic function based on an organic/inorganic hybrid materials

Shichao Wang, Guangwen Men, Liyan Zhao, Ying Wu, Yue Wang, Shimei Jiang
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Abstract

In this paper, one simple binaphthyl-bridged salicylidene Schiff base (2,2'-bis(3,5-dichloro-2-hydroxybenzylideneamino)-1,1'-binaphthyl (BCHB)) was successfully modified into the channel of mesoporous molecular sieve SBA-15. Detailed characterizations demonstrated that the inner channel of SBA-15 was firstly functionalized with 3-aminapropyltriethoxysilane, then the functional molecule BCHB was anchored through the hydrogen bond assembly. During these processes the hexagonally ordered mesoporous structure of SBA-15 has not been destroyed. Furthermore, the organic/inorganic hybrid material exhibits selectively recognition for Zn2+ upon other metal ions. Moreover, stimulated by the inputs of Zn2+ and UV irradiation, an INHIBIT logic gate can also be performed with fluorescence emission as the output.
基于有机/无机杂化材料的Zn2+/ uv激发分子逻辑函数
本文成功地将一个简单的联萘桥接水杨基希夫碱(2,2′-双(3,5-二氯-2-羟基苄基氨基)-1,1′-联萘基(BCHB))修饰成介孔分子筛SBA-15的通道。详细表征表明,SBA-15的内部通道首先被3-氨基丙基三乙氧基硅烷功能化,然后通过氢键组装锚定功能分子BCHB。在这些过程中,SBA-15的六边形有序介孔结构没有被破坏。此外,有机/无机杂化材料对其他金属离子表现出选择性识别Zn2+。此外,在Zn2+输入和UV照射的刺激下,还可以实现以荧光发射为输出的抑制逻辑门。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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