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首页> 外文期刊>Angewandte Chemie >Embedment of Quantum Dots and Biomolecules in a Dipeptide Hydrogel Formed In Situ Using Microfluidics
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Embedment of Quantum Dots and Biomolecules in a Dipeptide Hydrogel Formed In Situ Using Microfluidics

机译:使用微流体原位形成的二肽水凝胶中的量子点和生物分子的嵌入

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摘要

As low-molecular-weight hydrogelators, dipeptide hydrogel materials are suited for embedding multiple organic molecules and inorganic nanoparticles. Herein, a simple but precisely controllable method is presented that enables the fabrication of dipeptide-based hydrogels by supramolecular assembly inside microfluidic channels. Water-soluble quantum dots (QDs) as well as premixed porphyrins and a dipeptide in dimethyl sulfoxide (DMSO) were injected into a Y-shaped microfluidic junction. At the DMSO/water interface, the confined fabrication of a dipeptide-based hydrogel was initiated. Thereafter, the as-formed hydrogel flowed along a meandering microchannel in a continuous fashion, gradually completing gelation and QD entrapment. In contrast to hydrogelation in conventional test tubes, microfluidically controlled hydrogelation led to a tailored dipeptide hydrogel regarding material morphology and nanoparticle distribution.
机译:二肽水凝胶材料作为低分子量的氢化剂,适合于包埋多种有机分子和无机纳米粒子。在此,提出了一种简单但精确可控的方法,通过在微流控通道内进行超分子组装来制备二肽基水凝胶。将水溶性量子点(QD)、预混合卟啉和二甲基亚砜(DMSO)中的二肽注入Y形微流控结。在二甲基亚砜/水界面,二肽水凝胶的有限制备开始了。此后,形成的水凝胶沿着蜿蜒的微通道连续流动,逐渐完成凝胶化和量子点包封。与传统试管中的氢化反应不同,微流体控制的氢化反应在材料形态和纳米粒子分布方面产生了定制的二肽水凝胶。

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