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  • (-) Publication Year = 2020
  • (-) Publication Type = Journal Article
  • (-) Journal = Energy and Environmental Science
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4 V room-temperature all-solid-state sodium battery enabled by a passivating cathode/hydroborate solid electrolyte interface
Asakura, R., Reber, D., Duchêne, L., Payandeh, S., Remhof, A., Hagemann, H., & Battaglia, C. (2020). 4 V room-temperature all-solid-state sodium battery enabled by a passivating cathode/hydroborate solid electrolyte interface. Energy and Environmental Science, 13(12), 5048-5058. https://doi.org/10.1039/D0EE01569E
Band-bending induced passivation: high performance and stable perovskite solar cells using a perhydropoly(silazane) precursor
Kanda, H., Shibayama, N., Huckaba, A. J., Lee, Y., Paek, S., Klipfel, N., … Nazeeruddin, M. K. (2020). Band-bending induced passivation: high performance and stable perovskite solar cells using a perhydropoly(silazane) precursor. Energy and Environmental Science, 13(4), 1222-1230. https://doi.org/10.1039/c9ee02028d
Challenges and opportunities for an efficiency boost of next generation Cu(In,Ga)Se<sub>2</sub> solar cells: prospects for a paradigm shift
Ochoa, M., Buecheler, S., Tiwari, A. N., & Carron, R. (2020). Challenges and opportunities for an efficiency boost of next generation Cu(In,Ga)Se2 solar cells: prospects for a paradigm shift. Energy and Environmental Science, 13(7), 2047 (9 pp.). https://doi.org/10.1039/D0EE00834F
Universal approach toward high-efficiency two-dimensional perovskite solar cells <em>via</em> a vertical-rotation process
Yang, Y., Liu, C., Mahata, A., Li, M., Roldán-Carmona, C., Ding, Y., … Nazeeruddin, M. K. (2020). Universal approach toward high-efficiency two-dimensional perovskite solar cells via a vertical-rotation process. Energy and Environmental Science, 13(9), 3093-3101. https://doi.org/10.1039/d0ee01833c
Extra lithium-ion storage capacity enabled by liquid-phase exfoliated indium selenide nanosheets conductive network
Zhang, C. (J. ), Liang, M., Park, S. H., Lin, Z., Seral-Ascaso, A., Wang, L., … Nicolosi, V. (2020). Extra lithium-ion storage capacity enabled by liquid-phase exfoliated indium selenide nanosheets conductive network. Energy and Environmental Science, 13(7), 2124 (10 pp.). https://doi.org/10.1039/D0EE01052A