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Introducing heterojunction barriers into single kinked nanowires for the probe-free detection of proteins and intracellular recording

机译:异质结障碍引入单身弯折的probe-free检测的纳米线蛋白质和细胞内记录

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摘要

A nanoprobe based on a single nanowire (NW) possesses substantial potential for biological and in vivo determination. With regard to intracellular detection, minimal invasion and an adjustable detection depth have become crucial challenges. Nanoprobes with small, sharp tips, and long arms are thus desired. Here, we demonstrate a general strategy to prepare a single kinked NW heterojunction with a continuously adjustable angle, length and sharp line-type tip. It is found that heterojunction barriers introduced into kinked NWs can be used as a functional factor to interact with biomolecules and cells. The prepared kinked NW nanosensor is successfully used for the highly-sensitive probe-free detection of hemoglobin and real-time intracellular recording with minimal invasion. The sensing performance is dependent on the amount of heterojunction barriers. Integrated nanoprobes with multi-shaped structures are further designed for multi-functional applications. Introducing heterojunction barriers to kinked NWs provides a substantial opportunity for fabricating functional and integrated nanoprobes for applications in the life sciences.
机译:nanoprobe基于单个纳米线(西北)拥有大量潜在的生物和体内的决心。细胞内检测、入侵和最小可探测深度就变得至关重要挑战。和长臂所需。演示一个总体战略,准备一个单弯折的NW异质结的连续可调角度,长度和尖锐线型小费。可以使用障碍引入弯折的核国家身份作为一个与功能因素生物分子和细胞。成功地用于纳米传感器高度敏感的probe-free检测血红蛋白和实时细胞内记录以最小的入侵。依赖于大量的异质结障碍。结构进一步的设计多功能应用。异质结弯折的NWs提供了一个障碍大量制造的机会功能和集成nanoprobes在生命科学中的应用。

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