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- W4310496412 abstract "The special structure and morphology play a key role in improving the photodetection performance. In this paper, novel InPc nanostrings were obtained in low-temperature regions by the vapor deposition method. The morphology and structure of InPc nanostrings were characterized using scanning electron microscopy, X-ray diffraction, fourier transform infrared spectroscopy and Ultraviolet–Visible spectroscopy. The InPc nanostrings showed diffraction peaks at 8.946°(2θ) and 27.161°(2θ), which were absent in both the raw material and the PDF standard card, indicating that the InPc nanostrings formed a new crystal structure. In the photodetection research, the InPc nanostrings showed more excellent photoresponse than the InPc raw materials. The InPc nanostrings exhibited a much higher photoresponse current than the InPc raw materials under all tested conditions. Using AM 1.5G solar simulator as the light source (100 mW cm−2), InPc nanostrings showed great light response at low bias voltages of 0.5 and 1 V after 120 s test, which was not the case of the InPc raw materials. Under the irradiation conditions of violet (395 nm), blue (455 nm), green (525 nm) and red (850 nm), the sensitivity of InPc nanostrings was much higher than that of InPc raw material, which was 25.6762, 22.2696, 38.6550, 9.6490 times that of InPc raw materials, respectively. These remarkable photoelectric properties of InPc nanostrings provide a theoretical basis for their potential applications for photodetectors." @default.
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- W4310496412 date "2023-03-01" @default.
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- W4310496412 title "Self-assembly preparation of templateless, surfactantless indium phthalocyanine nanostrings for advanced photoelectric properties" @default.
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- W4310496412 doi "https://doi.org/10.1016/j.jcrysgro.2022.127023" @default.
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