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transition away from fossil fuels. A main source of inefficiency is the membrane. By flowing through porous electrodes in opposite directions, the hydrogen gas can be separated from the oxygen, without a
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that are either encapsulated or expressed inside the artificial cell. In particular, we want to find the conditions under which a membrane-deforming structure can autonomously first self-assemble on the inside
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actuator applications in modern technology. The advent of two-dimensional materials, and the ability to fabricate atomically thin membranes like graphene, promises further device downscaling, enabling
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securing funding for the continuation of the research. Website and References for further reading: https://www.tudelft.nl/en/2022/3me/news/bacterial-soundtracks-revealed-by-graphene-membrane Rosłoń, Irek E
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/2022/3me/news/bacterial-soundtracks-revealed-by-graphene-membrane Rosłoń, Irek E., et al. "Probing nanomotion of single bacteria with graphene drums." Nature Nanotechnology 17.6 (2022): 637-642. Rosłoń