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首页> 外文期刊>Angewandte Chemie >DNA-Decorated, Helically Twisted Nanoribbons: A Scaffold for the Fabrication of One-Dimensional, Chiral, Plasmonic Nanostructures
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DNA-Decorated, Helically Twisted Nanoribbons: A Scaffold for the Fabrication of One-Dimensional, Chiral, Plasmonic Nanostructures

机译:DNA装饰,螺旋扭曲的纳米纤维:用于制造一维,手性,等离子体纳米结构的支架

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摘要

Crafting of chiral plasmonic nanostructures is extremely important and challenging. DNA-directed organization of nanoparticle on a chiral template is the most appealing strategy for this purpose. Herein, we report a supramolecular approach for the design of DNA-decorated, helically twisted nanoribbons through the amphiphilicity-driven self-assembly of a new class of amphiphiles derived from DNA and hexaphenylbenzene (HPB). The ribbons are self-assembled in a lamellar fashion through the hydrophobic interactions of HPB. The transfer of molecular chirality of ssDNA into the HPB core results in the bias of one of the chiral propeller conformations for HPB and induces a helical twist into the lamellar packing, and leads to the formation of DNA-wrapped nanoribbons with M-helicity. The potential of the ribbon to act as a reversible template for the ID chiral organization of plasmonic nanomaterials through DNA hybridization is demonstrated.
机译:手性等离子体纳米结构的制作极为重要和具有挑战性。 在手性模板上DNA定向组织纳米粒子是最吸引人的策略。 在此,我们通过两类衍生自DNA和己类己烯苯(HPB)的新类两亲的两类两亲的自身组装来报告一种用于设计DNA装饰的螺旋扭曲的纳米筋的超分子方法。 通过HPB的疏水相互作用,丝带以层状方式自组装。 将SSDNA的分子手性转移到HPB核心中导致HPB的手性螺栓锥体之一的偏差,并诱导螺旋捻进入层状填料,并导致形成DNA包装的纳米波动与M螺旋状。 通过DNA杂交证明了丝带作为抗质子纳米材料的ID手性组织的可逆模板的潜力。

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