Stretchable photosensors with InN nanowires operating at a wavelength of 1.3 μm

IF 5.1 3区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Nanoscale Pub Date : 2024-10-31 DOI:10.1039/D4NR03257H
Jaehyeok Shin, Siyun Noh, Seunghwan Jhee, Sumin Kang, Yumin Lee and Jin Soo Kim
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Abstract

Stretchable photosensors, which operate in the wavelength window of 1.3 μm, were fabricated with InN nanowires (NWs) and graphene to serve as a light-absorbing medium and carrier channel, respectively. Specifically, the stretchable photosensors were fabricated by transferring InN NWs embedded in graphene layers onto polyurethane substrates pre-stretched at the strain levels of 10, 20, 30, 40, 50, and 60%. An InN-NW photosensor fabricated at the pre-strain level of 50% and stretched at the strain of 50% produces a photocurrent of 0.144 mA, which corresponds to 76.2% of that (0.189 mA) measured in the released state. The photocurrent and photoresponsivity of the photosensor measured after 1000 cyclic-stretching tests are comparable to those measured before stretching. The performance of the stretchable photosensors was largely unaffected by parameters such as the relative humidity and duration of operation (up to 30 days), indicating that the devices operate very stably.

Abstract Image

工作波长为 1.3 µm 的 InN 纳米线可伸缩光传感器
利用 InN 纳米线 (NW) 和石墨烯分别作为光吸收介质和载流子通道,制造出了工作波长为 1.3 µm 的可拉伸光传感器。具体来说,这种可拉伸光传感器是通过将嵌入石墨烯层的 InN 纳米线转移到预先拉伸到 10、20、30、40、50 和 60% 应变水平的聚氨酯基板上而制成的。在预应变为 50%、拉伸应变为 50%的条件下制造的 InN-NW 光传感器产生的光电流为 0.144 mA,相当于释放状态下测得光电流(0.189 mA)的 76.2%。经过 1000 次循环拉伸试验后测量的光传感器光电流和光致发光率与拉伸前测量的结果相当。可拉伸光传感器的性能基本不受相对湿度和运行时间(长达 30 天)等参数的影响,这表明器件的运行非常稳定。
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来源期刊
Nanoscale
Nanoscale CHEMISTRY, MULTIDISCIPLINARY-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
12.10
自引率
3.00%
发文量
1628
审稿时长
1.6 months
期刊介绍: Nanoscale is a high-impact international journal, publishing high-quality research across nanoscience and nanotechnology. Nanoscale publishes a full mix of research articles on experimental and theoretical work, including reviews, communications, and full papers.Highly interdisciplinary, this journal appeals to scientists, researchers and professionals interested in nanoscience and nanotechnology, quantum materials and quantum technology, including the areas of physics, chemistry, biology, medicine, materials, energy/environment, information technology, detection science, healthcare and drug discovery, and electronics.
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