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High Temperature-Resistant Transparent Conductive Films for Photoelectrochemical Devices Based on W/Ag Composite Nanonetworks
by
Liu, Jianke
, Wang, Youqing
, Liu, Menghan
, Qiao, Hu
, Zhang, Miaomiao
, Ren, Peiling
, Wang, Hongjun
, Wu, Wenxuan
, Li, Baoping
, Luo, Daobin
in
Ag nanowires
/ Carbon
/ Compounding
/ Electrical conductivity
/ Electrical resistivity
/ Electrochemical apparatus
/ Electrodes
/ electrospinning
/ Ethanol
/ Heat resistance
/ High temperature
/ Interfaces
/ Light transmission
/ Materials
/ Melting points
/ Metallic films
/ Morphology
/ Nanocomposites
/ Nanotechnology
/ Nanowires
/ Photoelectric devices
/ Photoelectrochemical devices
/ Polymers
/ Power supply
/ Production processes
/ semi-coherent interface
/ Silver
/ Thermal properties
/ Thermal resistance
/ thermal stability
/ Thin films
/ transparent conductive films
/ Transparent solids
/ Tungsten
/ W nanowires
2023
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High Temperature-Resistant Transparent Conductive Films for Photoelectrochemical Devices Based on W/Ag Composite Nanonetworks
by
Liu, Jianke
, Wang, Youqing
, Liu, Menghan
, Qiao, Hu
, Zhang, Miaomiao
, Ren, Peiling
, Wang, Hongjun
, Wu, Wenxuan
, Li, Baoping
, Luo, Daobin
in
Ag nanowires
/ Carbon
/ Compounding
/ Electrical conductivity
/ Electrical resistivity
/ Electrochemical apparatus
/ Electrodes
/ electrospinning
/ Ethanol
/ Heat resistance
/ High temperature
/ Interfaces
/ Light transmission
/ Materials
/ Melting points
/ Metallic films
/ Morphology
/ Nanocomposites
/ Nanotechnology
/ Nanowires
/ Photoelectric devices
/ Photoelectrochemical devices
/ Polymers
/ Power supply
/ Production processes
/ semi-coherent interface
/ Silver
/ Thermal properties
/ Thermal resistance
/ thermal stability
/ Thin films
/ transparent conductive films
/ Transparent solids
/ Tungsten
/ W nanowires
2023
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High Temperature-Resistant Transparent Conductive Films for Photoelectrochemical Devices Based on W/Ag Composite Nanonetworks
by
Liu, Jianke
, Wang, Youqing
, Liu, Menghan
, Qiao, Hu
, Zhang, Miaomiao
, Ren, Peiling
, Wang, Hongjun
, Wu, Wenxuan
, Li, Baoping
, Luo, Daobin
in
Ag nanowires
/ Carbon
/ Compounding
/ Electrical conductivity
/ Electrical resistivity
/ Electrochemical apparatus
/ Electrodes
/ electrospinning
/ Ethanol
/ Heat resistance
/ High temperature
/ Interfaces
/ Light transmission
/ Materials
/ Melting points
/ Metallic films
/ Morphology
/ Nanocomposites
/ Nanotechnology
/ Nanowires
/ Photoelectric devices
/ Photoelectrochemical devices
/ Polymers
/ Power supply
/ Production processes
/ semi-coherent interface
/ Silver
/ Thermal properties
/ Thermal resistance
/ thermal stability
/ Thin films
/ transparent conductive films
/ Transparent solids
/ Tungsten
/ W nanowires
2023
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High Temperature-Resistant Transparent Conductive Films for Photoelectrochemical Devices Based on W/Ag Composite Nanonetworks
Journal Article
High Temperature-Resistant Transparent Conductive Films for Photoelectrochemical Devices Based on W/Ag Composite Nanonetworks
2023
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Overview
The traditional Ag nanowire preparation means that it cannot meet the demanding requirements of photoelectrochemical devices due to the undesirable conductivity, difficulty in compounding, and poor heat resistance. Here, we prepared an Ag nanonetwork with superior properties using a special template method based on electrospinning technology. The transparent conductive films based on Ag nanonetworks have good transmittance in a wide range from ultraviolet to visible. It is important that the films have high operability and are easy to be compounded with other materials. After compounding with high-melting-point W metal, the heat-resistance temperature of the W/Ag composite transparent conductive films is increased by 100 °C to 460 °C, and the light transmission and electrical conductivity of the films are not significantly affected. All experimental phenomena in the study are analyzed theoretically. This research can provide an important idea for the metal nanowire electrode, which is difficult to be applied to the photoelectrochemical devices.
Publisher
MDPI AG,MDPI
Subject
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