
doi: 10.3390/app12062839
handle: 2108/290578
Personal, portable, and wearable electronics have become items of extensive use in daily life. Their fabrication requires flexible electronic components with high storage capability or with continuous power supplies (such as solar cells). In addition, formerly rigid tools such as electrochromic windows find new utilizations if they are fabricated with flexible characteristics. Flexibility and performances are determined by the material composition and fabrication procedures. In this regard, low-cost, easy-to-handle materials and processes are an asset in the overall production processes and items fruition. In the present mini-review, the most recent approaches are described in the production of flexible electronic devices based on NiO as low-cost material enhancing the overall performances. In particular, flexible NiO-based all-solid-state supercapacitors, electrodes electrochromic devices, temperature devices, and ReRAM are discussed, thus showing the potential of NiO as material for future developments in opto-electronic devices.
Technology, ReRAM, synthesis, QH301-705.5, QC1-999, electrochromic device, NiO, flexible device, NiO; flexible devices; synthesis; supercapacitors; electrodes; solar cells; electrochromic devices; temperature devices; ReRAM, supercapacitor, temperature device, Biology (General), QD1-999, supercapacitors, flexible devices, T, Physics, electrode, Engineering (General). Civil engineering (General), Settore CHIM/03 - CHIMICA GENERALE E INORGANICA, 620, electrodes, solar cell, Chemistry, solar cells, synthesi, TA1-2040
Technology, ReRAM, synthesis, QH301-705.5, QC1-999, electrochromic device, NiO, flexible device, NiO; flexible devices; synthesis; supercapacitors; electrodes; solar cells; electrochromic devices; temperature devices; ReRAM, supercapacitor, temperature device, Biology (General), QD1-999, supercapacitors, flexible devices, T, Physics, electrode, Engineering (General). Civil engineering (General), Settore CHIM/03 - CHIMICA GENERALE E INORGANICA, 620, electrodes, solar cell, Chemistry, solar cells, synthesi, TA1-2040
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