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Showing 1 to 4 of 4 for “"Buried interfaces"”.

  1. Interface engineering and multi-modal characterization of co-evaporated metal halide perovskite films for efficient perovskite-silicon tandem solar cells

    … strategies for controlled nucleation and buried interface engineering. We first systematically investigate the impact of PbI2, PbCl2, CsI and CsCl seed layers on the morphology, composition, and optoelectronic properties of co-evaporated FA0.8Cs0.2PbI2.7Br0.3 films. While all seed layers …

    tu-berlin Repository record for Interface engineering and multi-modal characterization of co-evaporated metal halide perovskite films for efficient perovskite-silicon tandem solar cells (opens in a new tab)

  2. Understanding and Improving Electrode|Polymer Electrolyte Interfaces for High-Voltage Lithium Metal Batteries

    … phenomena occurring at electrode|electrolyte interfaces, where electrochemical reactions take place and ultimately determines cell performance. Among SEs, polymer electrolytes (PEs) have attracted considerable interest due to their flexibility and malleability, which promote intimate contact …

    vt Repository record for Understanding and Improving Electrode|Polymer Electrolyte Interfaces for High-Voltage Lithium Metal Batteries (opens in a new tab)

  3. Design and characterization of catalysts and electrodes for electrochemical energy conversion applications

    … (MicroCT) to visualize the architecture and buried interfaces of fuel cell electrodes in a non-destructive fashion. By coupling MicroCT-based visualization with microfluidic-based electrochemical characterization, variation in catalyst layer morphology can be directly correlated to electrode …

    uiuc Repository record for Design and characterization of catalysts and electrodes for electrochemical energy conversion applications (opens in a new tab)

  4. Thermo-optic Phase Spectroscopy techniques for multiscale thermal conductance characterization in semiconductor integrated circuits

    … characterization across bulk materials, buried films and interfaces, and nanoscale films. Three variants are developed: Displacement TOPS (D-TOPS) for bulk solids, Immersion TOPS (I-TOPS) for deeply embedded films and interfaces, and High-Resolution TOPS (HR-TOPS) for nanoscale …

    uiuc Repository record for Thermo-optic Phase Spectroscopy techniques for multiscale thermal conductance characterization in semiconductor integrated circuits (opens in a new tab)