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Titlebook: Ultrathin Metal Transparent Electrodes for the Optoelectronics Industry; Dhriti Sundar Ghosh Book 2013 Springer International Publishing S

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Summary and Future Outlook,ve organic materials and poor mechanically flexibility. This thesis has investigated the properties and applicability of UTMF based TEs, showing that they are an effective and viable alternative to ITO for the optoelectronics industry.
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Ultrathin Metal Capped Al-Doped ZnO as Transparent Electrode,he environmental stability of AZO films is still an unsolved problem, leading to significantly increased electrical resistivity and surface degradation when the AZO is exposed to harsh environment (e.g., annealing in air or humidity damping).
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2190-5053 innovation award.Represents a major step forward in the dirTransparent electrodes (TEs) are a class of materials that make it possible to bring electrical current or potentials in close proximity to optically active regions without significant loss of optical energy. However, it is a challenge to d
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UTMF-Based Transparent Electrode Incorporating a Metallic Grid,resistivity (.) of UTMFs can be lower than that of TCOs. However, if one wants to achieve high optical transmission, the thickness of UTMFs should be limited to several nanometers, at the expense of sheet resistance (R.). This implies that the R., which is given by ., of UTMFs is relatively high com
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Ag/Al:ZnO Nano-Thick Bilayer TEs,nsparent electrodes (TEs). AZO has advantages like low cost and non-toxicity [1–4]. Another way of getting a more transparent TE is to use the dielectric/metal/dielectric sandwich structure [2, 6–8]. But this kind of triple or more layer structure leads to complexity as one need to deposit the thick
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Ultrathin Metal Capped Al-Doped ZnO as Transparent Electrode,widely developed and in particular Al-doped ZnO (AZO) has received great attention in the recent years and has been considered as a promising alternative to ITO [1–4]. This material is particularly interesting because of its low cost and wide availability of its constituent raw materials. However, t
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