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Light-material interfaces for self-powered optoelectronics

delete2021-01-01
delete6
PRE
AI
J
Jung H. Shin
Y
Young Bin Kim
J
Jung Hwan Park
J
Jin Soo Lee
S
Sang Hyun Park
S
Seung Hyung Lee
J
Jae Hee Lee
K
Keon Jae Lee *
DOI:10.1039/d1ta08892kdelete
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摘要

摘要

En 中文
Self-powered wearable optoelectronics are considered as a promising candidate for realizing sustainable and mobile visual communication. Inorganic materials have been utilized to develop various self-powered optoelectronic devices such as piezoelectric nanogenerators, photodetectors, and light-emitting diodes (LEDs). However, inevitable high temperature processes including thermal evaporation, annealing, and epitaxial growth cause serious thermal damage to plastic substrates, hindering the demonstration of a high performance self-powered flexible optoelectronic system. In this paper, we introduce light-material interface (LMI) technologies including nanowelding, laser lift-off, physical interlocking, and interfacial chemistry that can overcome the inherent thermal limit to realize inorganic-based self-powered wearable optoelectronic devices. The working mechanism of these innovative approaches is discussed according to theoretical simulations and scientific findings in previous research. Lastly, LMI-based self-powered flexible optoelectronic components including piezoelectric nanogenerators, thermoelectric energy harvesters, and mu LEDs are discussed.
Keyword:
EMITTING-DIODES
SILVER NANOWIRES
THIN-FILMS
TRANSPARENT
PERFORMANCE
FABRICATION
NANOGENERATOR
COPPER
SEMICONDUCTORS
ELECTRONICS

期刊

Journal of Materials Chemistry A 封面图
Journal of Materials Chemistry A
IF:
9.5
论文数:
3.3W
被引数:
21.7W

机构

K
kumoh national university technology
学者数:
1.6K
论文数: 1.7K
被引数: 3
引用论文

引用论文

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