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Design principles of chiral carbon nanodots help convey chirality from molecular to nanoscale level

机译:手性碳纳米点的设计原理有助于将手性从分子水平传递到纳米水平

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摘要

The chirality of (nano)structures is paramount in many phenomena, including biological processes, self-assembly, enantioselective reactions, and light or electron spin polarization. In the quest for new chiral materials, metallo-organic hybrids have been attractive candidates for exploiting the aforementioned scientific fields. Here, we show that chiral carbon nanoparticles, called carbon nanodots, can be readily prepared using hydrothermal microwave-assisted synthesis and easily purified. These particles, with a mean particle size around 3 nm, are highly soluble in water and display mirror-image profile both in the UV–Vis and in the infrared regions, as detected by electronic and vibrational circular dichroism, respectively. Finally, the nanoparticles are used as templates for the formation of chiral supramolecular porphyrin assemblies, showing that it is possible to use and transfer the chiral information. This simple (and effective) methodology opens up exciting opportunities for developing a variety of chiral composite materials and applications.
机译:(纳米)结构的手性在许多现象中至关重要,包括生物过程,自组装,对映选择性反应以及光或电子自旋极化。在寻求新的手性材料中,金属有机杂化物已成为开发上述科学领域的诱人候选。在这里,我们表明手性碳纳米粒子,称为碳纳米点,可以很容易地使用水热微波辅助合成制备,并易于纯化。这些粒子的平均粒径约为3 nm,它们高度溶于水,并分别通过电子和振动圆二色性检测到,在UV-Vis和红外区域均显示出镜像轮廓。最后,纳米颗粒被用作形成手性超分子卟啉组装体的模板,表明可以使用和传递手性信息。这种简单(有效)的方法为开发各种手性复合材料和应用提供了令人兴奋的机会。

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