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This paper presents the application of the nanoimprint technology in microelectromechanical-systems (MEMS)-based micro direct-methanol fuel cell (mu-DMFC) for high performance and low cost. We first reported the nanoimprint behavior of the protonated Nafion 117 membrane with different micro patterns within the temperature range of 100degC -150degC. The best pattern transfer was achieved at 130degC...
The state-of-the-art of MEMS-based fuel cell can not meet the requirements of on-chip power application owing to low cell voltage and poor power density. This is mainly resulted from poor process compatibility between traditional fuel cell technology and MEMS industry. In particular, graphite-based porous electrode is difficult to be integrated into MEMS-based fuel cell so that there is lack of enough...
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