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Showing 1 to 5 of 5 for “"Electrochromics"”.

  1. Pyrrolopyrrole-Based Materials for High-Contrast Electrochromics

    <p>Understanding structure-property relationships of underutilized p-conjugated chromophores is an important task for the continued discovery of materials that will find utility in organic electronic applications. Dihydropyrrolo[3,2-<em>b</em>]pyrroles (DHPPs) are synthetically simple and highly …

    kennesaw Repository record for Pyrrolopyrrole-Based Materials for High-Contrast Electrochromics (opens in a new tab)

  2. Three-dimensional virus scaffolds for energy storage and microdevice applications

    … to include photovoltaics, catalysis, electrochromics, and fuel cells.

    mit Repository record for Three-dimensional virus scaffolds for energy storage and microdevice applications (opens in a new tab)

  3. Azomethine-Containing Moieties for Simple and Degradable Conjugated Polymers

    … been studied for various applications such as electrochromics, organic photovoltaics, organic light-emitting diodes, thin film transistors, biosensors, and energy storage materials. They have received significant attention from many researchers because they are relatively inexpensive and …

    kennesaw Repository record for Azomethine-Containing Moieties for Simple and Degradable Conjugated Polymers (opens in a new tab)

  4. Doped tungsten oxide nanocrystals for next generation electrochromic windows

    Doped tungsten oxide (WO₃ [subscript -x]) nanocrystals (NCs) have lots of potential for next generation electrochromic windows compared to bulk thin films. The difference lies in intrinsic WO₃ [subscript -x] NC properties of shape and crystalline anisotropy with localized surface plasmon resonance …

    texas Repository record for Doped tungsten oxide nanocrystals for next generation electrochromic windows (opens in a new tab)

  5. Electrolyte Dependence on the Electrochemical and Optoelectronic Activity of a Conjugated Polymer in Organic Solvents

    <p>Organic electronic devices rely on the redox and charge transport properties of conjugated polymers. Many high-performance electroactive polymers are hydrophobic and require processing in organic solvents. As such, these materials are characterized in nonaqueous electrolyte systems to evaluate …

    usm Repository record for Electrolyte Dependence on the Electrochemical and Optoelectronic Activity of a Conjugated Polymer in Organic Solvents (opens in a new tab)