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Schwietert, T.K. (author), Gautam, A. (author), Lavrinenko, A.K. (author), Drost, David (author), Famprikis, T. (author), Wagemaker, M. (author), Vasileiadis, A. (author)
Due to their high ionic conductivity, lithium-ion conducting argyrodites show promise as solid electrolytes for solid-state batteries. Aliovalent substitution is an effective technique to enhance the transport properties of Li<sub>6</sub>PS<sub>5</sub>Br, where aliovalent Si substitution triples ionic conductivity. However, the origin of this...
journal article 2024
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Schwietert, T.K. (author)
Solid-state batteries have the promise to outperformconventional Li-ion batteries. Solid electrolytes are safer, as the solids used are generally not combustible, and especially if Li-metal anodes are enabled, higher energy densities can be obtained. However, solidstate batteries still have challenges to overcome. In this thesis the origins of...
doctoral thesis 2022
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Schwietert, Felix (author), Volkov, V. (author), Huis in ’t Veld, Pim J. (author), Dogterom, A.M. (author), Musacchio, Andrea (author), Kierfeld, Jan (author)
In the mitotic spindle, microtubules attach to chromosomes via kinetochores. The microtubule-binding Ndc80 complex is an integral part of kinetochores, and is essential for kinetochores to attach to microtubules and to transmit forces from dynamic microtubule ends to the chromosomes. The Ndc80 complex has a rod-like appearance with globular...
journal article 2022
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Schwietert, T.K. (author), Vasileiadis, A. (author), Wagemaker, M. (author)
Solid-state batteries have significant advantages over conventional liquid batteries, providing improved safety, design freedom, and potentially reaching higher power and energy densities. The major obstacle in the commercial realization of solid-state batteries is the high resistance at the interfaces. To overcome this bottleneck, it is...
journal article 2021
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Yu, C. (author), Ganapathy, S. (author), Hageman, J.G. (author), van Eijck, L. (author), Van Eck, Ernst R.H. (author), Zhang, Long (author), Schwietert, T.K. (author), Basak, S. (author), Kelder, E.M. (author), Wagemaker, M. (author)
The high Li-ion conductivity of the argyrodite Li<sub>6</sub>PS<sub>5</sub>Cl makes it a promising solid electrolyte candidate for all-solid-state Li-ion batteries. For future application, it is essential to identify facile synthesis procedures and to relate the synthesis conditions to the solid electrolyte material performance. Here, a...
journal article 2018
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Schwietert, D.J. (author)
report 1989
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