ACS Applied Materials & Interfaces · 2018 · 57 citations · 42 references
Thin Film PhysicsOptical MaterialsOptical TechnologiesEngineeringOptoelectronic DevicesThin Film Process TechnologyTransparent Flexible ElectrodesOptical PropertiesThin Film ProcessingNanophotonicsMaterials ScienceElectrical EngineeringOxide ElectronicsPhotonic MaterialsOptoelectronic MaterialsOptical CeramicMaterial AnalysisElectronic MaterialsFlexible ElectronicsApplied PhysicsSandwich ElectrodesGlass PhotonicsSmart WindowsLight AbsorptionThin FilmsOptoelectronicsOptical DevicesUltralow Optical Loss
Transparent flexible electrodes are in ever-growing demand for modern stretchable optoelectronic devices, such as display technologies, solar cells, and smart windows. Such sandwich-film-electrodes deposited on polymer substrates are unattainable because of the low quality of the films, inducing a relatively large optical loss and resistivity as well as a difficulty in elucidating the interference behavior of light. In this article, we report a high-quality AZO/Au/AZO sandwich film with excellent optoelectronic performance, e.g., an average transmittance of about 81.7% (including the substrate contribution) over the visible range, a sheet resistance of 5 Ω/sq, and a figure-of-merit (FoM) factor of ∼55.1. These values are well ahead of those previously reported for sandwich-film-electrodes. Additionally, the interference behaviors of light modulated by the coat and metal layers have been explored with the employment of transmittance spectra and numerical simulations. In particular, a heater device based on an AZO/Au/AZO sandwich film exhibits high performance such as short response time (∼5 s) and uniform temperature field. This work provides a deep insight into the improvement of the film quality of the sandwich electrodes and the design of high-performance transparent flexible devices by the application of a flexible substrate with an atomically smooth surface.
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Heat Dissipation of Transparent Graphene Defoggers
Jung Jun Bae, Seong Chu Lim, Gang Han et al. · Advanced Functional Materials · 2012 · 284 citations · Full text
Engineering, Transparent Graphene Heaters, Graphene Nanomeshes +19
Transparent flexible heater based on hybrid of carbon nanotubes and silver nanowires
Duckjong Kim, Lijing Zhu, Da-Jeong Jeong et al. · Carbon · 2013 · 223 citations