TY - JOUR
T1 - Laser-scribed conductive, photoactive transition metal oxide on soft elastomers for Janus on-skin electronics and soft actuators
AU - Zhao, Ganggang
AU - Ling, Yun
AU - Su, Yajuan
AU - Chen, Zanyu
AU - Mathai, Cherian J.
AU - Emeje, Ogheneobarome
AU - Brown, Alexander
AU - Alla, Dinesh Reddy
AU - Huang, Jie
AU - Kim, Chansong
AU - Chen, Qian
AU - He, Xiaoqing
AU - Stalla, David
AU - Xu, Yadong
AU - Chen, Zehua
AU - Chen, Pai Yen
AU - Gangopadhyay, Shubhra
AU - Xie, Jingwei
AU - Yan, Zheng
N1 - Publisher Copyright:
Copyright © 2022 The Authors, some rights reserved
PY - 2022/6
Y1 - 2022/6
N2 - Laser-assisted fabrication of conductive materials on flexible substrates has attracted intense interests because of its simplicity, easy customization, and broad applications. However, it remains challenging to achieve laser scribing of conductive materials on tissue-like soft elastomers, which can serve as the basis to construct bioelectronics and soft actuators. Here, we report laser scribing of metallic conductive, photoactive transition metal oxide (molybdenum dioxide) on soft elastomers, coated with molybdenum chloride precursors, under ambient conditions. Laser-scribed molybdenum dioxide (LSM) exhibits high electrical conductivity, biocompatibility, chemical stability, and compatibility with magnetic resonance imaging. In addition, LSM can be made on various substrates (polyimide, glass, and hair), showing high generality. Furthermore, LSM-based Janus on-skin electronics are developed to record information from human skin, human breath, and environments. Taking advantage of its outstanding photothermal effect, LSM-based soft actuators are developed to build light-driven reconfigurable three-dimensional architectures, reshapable airflow sensors, and smart robotic worms with bioelectronic sensors.
AB - Laser-assisted fabrication of conductive materials on flexible substrates has attracted intense interests because of its simplicity, easy customization, and broad applications. However, it remains challenging to achieve laser scribing of conductive materials on tissue-like soft elastomers, which can serve as the basis to construct bioelectronics and soft actuators. Here, we report laser scribing of metallic conductive, photoactive transition metal oxide (molybdenum dioxide) on soft elastomers, coated with molybdenum chloride precursors, under ambient conditions. Laser-scribed molybdenum dioxide (LSM) exhibits high electrical conductivity, biocompatibility, chemical stability, and compatibility with magnetic resonance imaging. In addition, LSM can be made on various substrates (polyimide, glass, and hair), showing high generality. Furthermore, LSM-based Janus on-skin electronics are developed to record information from human skin, human breath, and environments. Taking advantage of its outstanding photothermal effect, LSM-based soft actuators are developed to build light-driven reconfigurable three-dimensional architectures, reshapable airflow sensors, and smart robotic worms with bioelectronic sensors.
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U2 - 10.1126/sciadv.abp9734
DO - 10.1126/sciadv.abp9734
M3 - Article
C2 - 35731865
AN - SCOPUS:85132632928
SN - 2375-2548
VL - 8
JO - Science Advances
JF - Science Advances
IS - 25
M1 - eabp9734
ER -