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Electrical and Optical Characteristics of Heterojunction Devices Composed of Silicon Nanowires and Mercury Selenide Nanoparticle Films on Flexible Plastics

机译:硅纳米线和硒化汞纳米粒子薄膜在柔性塑料上组成的异质结器件的电学和光学特性

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摘要

A pn heterojunction device based on p-type silicon (Si) nanowires (NWs) prepared by top-down method and n-type mercury selenide (HgSe) nanoparticles (NPs) synthesized by the colloidal method have been fabricated on a flexible plastic substrate. The synthesized HgSe NPs were analyzed through the effective mass approximation. The characteristics of the heterojunction device were examined and studied with the energy band diagram. The device showed typical diode characteristics with a turn-on voltage of 1.5 V and exhibited a high rectification ratio of 10~3 under relatively low forward bias. Under illumination of 633-nm-wavelength light, the device presented photocurrent efficiency of 117.5 and 20.1 nA/W under forward bias and reverse bias conditions, respectively. Moreover, the photocurrent characteristics of the device have been determined by bending of the plastic substrate upward and downward with strain of 0.8%. Even though the photocurrent efficiency has fluctuations during the bending cycles, the values are roughly maintained for 10~4 bending cycles. This result indicates that the fabricated heterojunction device has the potential to be applied as fundamental elements of flexible nanoelectronics.
机译:已经在柔性塑料基板上制造了基于自顶向下方法制备的p型硅(Si)纳米线(NWs)和通过胶体方法合成的n型硒化汞(HgSe)纳米颗粒(NPs)的pn异质结器件。通过有效的质量近似分析合成的HgSe NP。用能带图检查和研究了异质结器件的特性。该器件具有典型的二极管特性,其开启电压为1.5 V,并且在相对较低的正向偏压下具有10〜3的高整流比。在633 nm波长的光照射下,该器件在正向偏置和反向偏置条件下的光电流效率分别为117.5和20.1 nA / W。此外,已经通过以0.8%的应变向上和向下弯曲塑料基板来确定器件的光电流特性。即使光电流效率在弯曲周期中波动,但在10〜4个弯曲周期中仍可大致保持该值。该结果表明,所制造的异质结器件具有被用作柔性纳米电子学的基本元件的潜力。

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