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首页> 外文期刊>Angewandte Chemie >Photochemical Creation of Fluorescent Quantum Defects in Semiconducting Carbon Nanotube Hosts
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Photochemical Creation of Fluorescent Quantum Defects in Semiconducting Carbon Nanotube Hosts

机译:半导体碳纳米管主机中荧光量子缺陷的光化学创建

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摘要

Quantum defects are an emerging class of synthetic single-photon emitters that hold vast potential for near-infrared imaging, chemical sensing, materials engineering, and quantum information processing. Herein, we show that it is possible to optically direct the synthetic creation of molecularly tunable fluorescent quantum defects in semiconducting single-walled carbon nanotube hosts through photochemical reactions. By exciting the host semiconductor with light that resonates with its electronic transition, we find that halide-containing aryl groups can covalently bond to the sp(2) carbon lattice. The introduced quantum defects generate bright photoluminescence that allows tracking of the reaction progress in situ. We show that the reaction is independent of temperature but correlates strongly with the photon energy used to drive the reaction, suggesting a photochemical mechanism rather than photothermal effects. This type of photochemical reactions opens the possibility to control the synthesis of fluorescent quantum defects using light and may enable lithographic patterning of quantum emitters with electronic and molecular precision.
机译:量子缺陷是一种新一类的合成单光子发射器,其具有近红外成像,化学传感,材料工程和量子信息处理的巨大潜力。在此,我们表明,可以通过光化学反应光学地指导半导体单壁碳纳米管宿主中的分子可调荧光量子缺陷的合成产生。通过用光谐振的光激励宿主半导体,我们发现含卤化卤的芳基可以共价键入SP(2)碳晶格。引入的量子缺陷产生明亮的光致发光,允许原位跟踪反应进展。我们表明,反应与温度无关,但与用于驱动反应的光子能量强烈地相关,表明光化学机制而不是光热效应。这种类型的光化学反应打开了使用光控制荧光量子缺陷的合成的可能性,并且可以使Quantum发射器的光刻图案化具有电子和分子精度。

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