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Photocurrent enhancement of SiNW-FETs by integrating protein-shelled CdSe quantum dots

机译:光电流SiNW-FETs的增强整合protein-shelled CdSe量子点

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We proposed a new strategy to increase the photoresponsivity of silicon NW field-effect transistors (FETs) by integrating CdSe quantum dots (QDs) using protein shells (PSs). CdSe QDs were synthesized using ClpP, a bacterial protease, as protein shells to control the size and stability of QD and to facilitate the mounting of QDs on SiNWs. The photocurrent of SiNW-FETs in response to light at a wavelength of 480 nm was enhanced by a factor of 6.5 after integrating CdSe QDs because of the coupling of the optical properties of SiNWs and QDs. As a result, the photoresponsivity to 480 nm light reached up to 3.1 x 10(6), the highest value compared to other SiNW-based devices in the visible light range.
机译:我们提出了一种新的策略来增加photoresponsivity硅的NW场效应晶体管(场效应晶体管)通过集成CdSe量子点(量子点)使用蛋白质壳(PSs)。使用ClpP合成,细菌吗蛋白酶,如蛋白质壳控制大小和QD的稳定和促进安装在SiNWs量子点的。SiNW-FETs响应光的波长480纳米增强了6.5倍将量子点CdSe因为耦合的SiNWs和量子点的光学特性。结果,photoresponsivity 480纳米光达到了3.1 x 10(6),最高的价值而其他SiNW-based设备可见光范围内。

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