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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Binary Supramolecular Gel of Achiral Azobenzene with a Chaperone Gelator: Chirality Transfer, Tuned Morphology, and Chiroptical Property
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Binary Supramolecular Gel of Achiral Azobenzene with a Chaperone Gelator: Chirality Transfer, Tuned Morphology, and Chiroptical Property

机译:具有伴侣凝胶器的白粥样硬凝胶的二元超分子凝胶:手性转移,调谐形态和ChiroPtical属性

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摘要

Binary supramolecular gels based on achiral azobenzene derivatives and a chiral chaperone gelator, long-alkyl-chain-substituted L-Histidine (abbreviated as LHC18) that could assist many nongelling acids in forming gels, were investigated in order to fabricate the chiroptical gel materials in a simple way. It was found that although the carboxylic acid-terminated achiral azobenzene derivatives could not form gels in any solvents, when mixed with LHC18 they formed the co-gels and self-assembled into various morphologies ranging from nanotubes and loose nanotubes to nanosheets, depending on the substituent groups on the azobenzene moiety. The ether linkage and the number of carboxylic acid groups attached to the azobenzene moiety played important roles. Upon gel formation, the localized molecular chirality in LHC18 could be transferred to the azobenzene moiety. Combined with the trans-cis isomerization of the azobenzene, optically and chiroptically reversible gels were generated. It was found that the gel based on azobenzene with two carboxylic acid groups and ether linkages showed clear optical reversibility but less chiroptical reversibility, whereas the gel based on azobenzene with one carboxylic acid and an ether linkage showed both optical and chiroptical reversibility. Thus, new insights into the relationship among the molecular structures of the azobenzene, self-assembled nanostructures in the gel and the optical and chiroptical reversibility were disclosed.
机译:,长烷基链取代的L-组氨酸(缩写为LHC18)能够协助许多nongelling酸在形成凝胶,基于非手性偶氮衍生物和手性分子伴侣胶凝剂二进制超分子的凝胶,以便制造手性光学凝胶材料进行了研究一个简单的方法。据发现,虽然羧酸封端的非手性偶氮苯衍生物不能形成在任何溶剂的凝胶,当与LHC18混合时,它们形成共凝胶和自组装成各种形态,从纳米管和松纳米管纳米片,这取决于对偶氮苯结构部分的取代基。醚键和连接到偶氮苯部分的羧酸基团的数目起着重要的作用。一旦凝胶形成,在LHC18局部分子手性可以被转移到偶氮苯部分。与偶氮苯的反式 - 顺式异构化相结合,光学和chiroptically产生可逆凝胶。已经发现,基于偶氮苯与两个羧酸基团和醚键的凝胶显示出清晰的光学可逆性但较少的手性光学可逆性,而基于与一种羧酸和醚键偶氮苯的凝胶表现出光学和手性光学可逆性。因此,新的见解偶氮苯的分子结构之间的关系,在凝胶和光学和手性光学可逆性自组装纳米结构进行了披露。

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    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci CAS Res Educ Ctr Excelle CAS Key Lab Colloid Interface &

    Chem Thermodynam Beijing 100190 Peoples R China;

    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci CAS Res Educ Ctr Excelle CAS Key Lab Colloid Interface &

    Chem Thermodynam Beijing 100190 Peoples R China;

    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci CAS Res Educ Ctr Excelle CAS Key Lab Colloid Interface &

    Chem Thermodynam Beijing 100190 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;化学;
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