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Showing 1 to 3 of 3 for “"Inverse opal structures"”.

  1. Effect of Ionic Liquid Electrolytes in DSSCs with Titanium Dioxide (TiO2) Inverse Opal Structures

    … Here, we present a study of DSSCs with TiO2 inverse opal electrodes of controlled pore sizes (0.1-1 m) and ionic liquid derivatives of 1-alkyl-3-methylimidazolium tetrafluoroborate (alkyl: ethyl, butyl, and decyl) with viscosities ranging from 25.2 to 721 cP. The stability and functionality …

    cuny Repository record for Effect of Ionic Liquid Electrolytes in DSSCs with Titanium Dioxide (TiO2) Inverse Opal Structures (opens in a new tab)

  2. Ordered macroporous metal oxides and carbonaceous composites for Li-ion and beyond Li-ion batteries

    … ordered macroporous materials, specifically inverse opal materials, for electrochemical energy storage systems, particularly rechargeable batteries. Exploring the potential of composite structures, this research focuses on TiO2/GeO2 nanocomposites and C/TiO2 inverse opal anodes in Li-ion …

    cork Repository record for Ordered macroporous metal oxides and carbonaceous composites for Li-ion and beyond Li-ion batteries (opens in a new tab)

  3. Electrodeposited macroporous vanadium oxide Li-ion battery materials

    … of 3D macroporous vanadium oxide inverse opals and binary inverse opals on transparent conducting oxide substrates and stainless steel and thermally oxidized stainless-steel substrates. The electrodeposition follows a diffusion limited growth mode to form 3D porous crystalline V2O5 …

    cork Repository record for Electrodeposited macroporous vanadium oxide Li-ion battery materials (opens in a new tab)