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首页> 外文期刊>Chemistry: A European journal >Rational Design and Application of a Redox-Active, Photoresponsive, Discrete Metallogelator
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Rational Design and Application of a Redox-Active, Photoresponsive, Discrete Metallogelator

机译:氧化还原活性,光响应,离散金属成对剂的合理设计和应用

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A photoresponsive discrete metallogelator was rationally designed by incorporating a photochromic azobenzene subunit in the structure of a redox-active ferrocene-peptide conjugate. The target molecule was purposefully equipped with a dipeptide unit capable of self-assembly in response to sonication. The designed molecule was shown to undergo supramolecular self-assembly and achieve organogelation in response to ultrasound, light, heat, and redox signals. The sol-gel phase transition of the designed gelator was found to be sensitive to a plethora of input stimuli, allowing the application of the sol-gel transition behavior in basic logic gate operations. A gel-based NOT logic gate operation was realized when the redox-active property of the organogel was examined by using different oxidizing agents. The smart response of the gelator was further exploited in designing XOR operations under oxidizing or non-oxidizing conditions.
机译:通过将光致变色的偶氮苯亚基掺入氧化还原活性二茂铁-肽共轭物的结构中,合理设计了光响应性离散金属成对剂。靶分子被有意地装备有能够响应于超声而自组装的二肽单元。所设计的分子显示出能够进行超分子自组装,并响应超声,光,热和氧化还原信号而实现有机凝胶化。发现设计的胶凝剂的溶胶-凝胶相变对大量的输入刺激敏感,从而允许将溶胶-凝胶相变行为应用于基本逻辑门操作。当通过使用不同的氧化剂检查有机凝胶的氧化还原活性时,实现了基于凝胶的非逻辑门操作。在设计氧化或非氧化条件下的XOR操作时,还进一步利用了胶凝剂的智能响应。

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