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- W2801985502 abstract "This perspective presents a membraneless direct liquid fuel cell ( DLFC ) concept based on a catalyst‐selective strategy. The membraneless DLFC s are operated at low temperatures by employing a non‐precious cathode catalyst with a high catalytic selectivity. The uniqueness is that the inexpensive cathode catalyst only catalyzes the oxygen reduction reaction but does not catalyze the oxidation reaction of a specific fuel. Therefore, during the operation of DLFC s, the liquid fuel can enter the cathode freely without any concern of fuel crossover. This catalyst‐selective approach tactfully avoids the use of high‐cost or technically unviable ion‐exchange polymer membranes in DLFC s. The catalyst‐selective operating principle also overcomes the scalability issue of the traditional laminar‐flow membraneless DLFC s. Through a proper management of the anode and cathode catalysts in the cell, a variety of inexpensive, renewable alcohols, and small‐molecule organics can be employed as anode fuels. This innovative approach of membraneless alkaline DLFC s offers a great opportunity for the development of inexpensive energy‐generation systems for both mobile and stationary applications. In addition to summarizing the principle and the research progress of the unique membraneless DLFC platform, the challenges and future research directions are presented." @default.
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- W2801985502 date "2018-03-01" @default.
- W2801985502 modified "2023-10-16" @default.
- W2801985502 title "Scalable Membraneless Direct Liquid Fuel Cells Based on a Catalyst-Selective Strategy" @default.
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- W2801985502 doi "https://doi.org/10.1002/eem2.12000" @default.
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