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Highly Crystalized MAPbX Perovskite Triangular Nanowire Arrays for Optoelectronic Applications. | LitMetric

Highly Crystalized MAPbX Perovskite Triangular Nanowire Arrays for Optoelectronic Applications.

Adv Mater

Key Laboratory of D&A for Metal-Functional Materials, Key Laboratory of Advanced Civil Engineering Materials of Ministry of Education, School of Materials Science & Engineering, Tongji University, Shanghai, 201804, China.

Published: February 2024

AI Article Synopsis

  • - A new method for creating high-quality 1D perovskite triangular nanowire (TNW) arrays is introduced, using a soft stamp to control the growth direction and ensure good crystallinity of the nanowires.
  • - The resulting photodetectors from these MAPbI TNWs show impressive performance with a responsivity of 125.2 A/W and detectivity of 2.8 × 10 Jones at 650 nm, attributed to their crystalline structure and reduced photon reflection.
  • - The triangular design not only enhances flexibility even after many bending cycles but also allows for scalable production compatible with existing semiconductor processes, hinting at potential applications in image sensors.

Article Abstract

Here, a facile fabrication approach for the high-quality 1D perovskite triangular nanowire (TNW) array synthesis through space-confined effect is reported. A soft stamp containing 1D triangular linear array pattern is used to confine the MAPbX solution and to guide the growth of the nanowires along the prescribed direction with good crystallinity. The further constructed photodetectors based on the obtained MAPbI TNWs exhibit superior photoresponse properties with a responsivity of (125.2 ± 2.5) A W and detectivity of (2.8 ± 0.8) × 10 Jones at the wavelength of 650 nm. This excellent performance is attributed to the highly crystalline TNW with optical anisotropy and a small asymptotic height, which reduces the probability of the photon reflection and promotes the carrier transport. More interestingly, the increased surface area of the triangular device can present superior flexibility after a couple of thousands of bending cycles. Furthermore, by fabricating 7 × 7 photodetector arrays, the potential image sensor application is demonstrated. The perovskite nanowire fabrication approach is scalable and compatible with current semiconductor manufacturing, which indicates their great potential in broad applications.

Download full-text PDF

Source
http://dx.doi.org/10.1002/adma.202310427DOI Listing

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