Versatile self-assembled electrospun micropyramid arrays for high-performance on-skin devices with minimal sensory interference

Designing efficient on-skin devices with minimal sensory interference remains challenging. Here, Zhang et al. develop versatile electrospun micropyramid array-based on-skin devices, achieving both imperceptibility and high performances in pressure sensing, radiative cooling, and bioenergy harvesting...

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Main Authors: Jia-Han Zhang, Zhengtong Li, Juan Xu, Jiean Li, Ke Yan, Wen Cheng, Ming Xin, Tangsong Zhu, Jinhua Du, Sixuan Chen, Xiaoming An, Zhou Zhou, Luyao Cheng, Shu Ying, Jing Zhang, Xingxun Gao, Qiuhong Zhang, Xudong Jia, Yi Shi, Lijia Pan
Format: Article
Language:English
Published: Nature Portfolio 2022-10-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-33454-y
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author Jia-Han Zhang
Zhengtong Li
Juan Xu
Jiean Li
Ke Yan
Wen Cheng
Ming Xin
Tangsong Zhu
Jinhua Du
Sixuan Chen
Xiaoming An
Zhou Zhou
Luyao Cheng
Shu Ying
Jing Zhang
Xingxun Gao
Qiuhong Zhang
Xudong Jia
Yi Shi
Lijia Pan
author_facet Jia-Han Zhang
Zhengtong Li
Juan Xu
Jiean Li
Ke Yan
Wen Cheng
Ming Xin
Tangsong Zhu
Jinhua Du
Sixuan Chen
Xiaoming An
Zhou Zhou
Luyao Cheng
Shu Ying
Jing Zhang
Xingxun Gao
Qiuhong Zhang
Xudong Jia
Yi Shi
Lijia Pan
author_sort Jia-Han Zhang
collection DOAJ
description Designing efficient on-skin devices with minimal sensory interference remains challenging. Here, Zhang et al. develop versatile electrospun micropyramid array-based on-skin devices, achieving both imperceptibility and high performances in pressure sensing, radiative cooling, and bioenergy harvesting.
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spelling doaj.art-8064001ae7854883bf214f97afedddb92022-12-22T03:55:09ZengNature PortfolioNature Communications2041-17232022-10-0113111010.1038/s41467-022-33454-yVersatile self-assembled electrospun micropyramid arrays for high-performance on-skin devices with minimal sensory interferenceJia-Han Zhang0Zhengtong Li1Juan Xu2Jiean Li3Ke Yan4Wen Cheng5Ming Xin6Tangsong Zhu7Jinhua Du8Sixuan Chen9Xiaoming An10Zhou Zhou11Luyao Cheng12Shu Ying13Jing Zhang14Xingxun Gao15Qiuhong Zhang16Xudong Jia17Yi Shi18Lijia Pan19Collaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversityKey Laboratory of Hydrology Water Resources and Hydraulic Engineering, Hohai UniversityShanxi Provincial People’s HospitalCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversityCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversityCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversityCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversitySchool of Chemistry and Chemical Engineering, Nanjing UniversitySchool of Materials and Metallurgy, Inner Mongolia University of Science and TechnologySchool of Physics, Nanjing UniversitySchool of Chemistry and Chemical Engineering, Nanjing UniversityCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversityCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversityCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversityCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversityCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversitySchool of Chemistry and Chemical Engineering, Nanjing UniversitySchool of Chemistry and Chemical Engineering, Nanjing UniversityCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversityCollaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing UniversityDesigning efficient on-skin devices with minimal sensory interference remains challenging. Here, Zhang et al. develop versatile electrospun micropyramid array-based on-skin devices, achieving both imperceptibility and high performances in pressure sensing, radiative cooling, and bioenergy harvesting.https://doi.org/10.1038/s41467-022-33454-y
spellingShingle Jia-Han Zhang
Zhengtong Li
Juan Xu
Jiean Li
Ke Yan
Wen Cheng
Ming Xin
Tangsong Zhu
Jinhua Du
Sixuan Chen
Xiaoming An
Zhou Zhou
Luyao Cheng
Shu Ying
Jing Zhang
Xingxun Gao
Qiuhong Zhang
Xudong Jia
Yi Shi
Lijia Pan
Versatile self-assembled electrospun micropyramid arrays for high-performance on-skin devices with minimal sensory interference
Nature Communications
title Versatile self-assembled electrospun micropyramid arrays for high-performance on-skin devices with minimal sensory interference
title_full Versatile self-assembled electrospun micropyramid arrays for high-performance on-skin devices with minimal sensory interference
title_fullStr Versatile self-assembled electrospun micropyramid arrays for high-performance on-skin devices with minimal sensory interference
title_full_unstemmed Versatile self-assembled electrospun micropyramid arrays for high-performance on-skin devices with minimal sensory interference
title_short Versatile self-assembled electrospun micropyramid arrays for high-performance on-skin devices with minimal sensory interference
title_sort versatile self assembled electrospun micropyramid arrays for high performance on skin devices with minimal sensory interference
url https://doi.org/10.1038/s41467-022-33454-y
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