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Titlebook: Electrochemistry of N4 Macrocyclic Metal Complexes; Volume 1: Energy Jose H. Zagal,Fethi Bedioui Book 2016Latest edition Springer Internati

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https://doi.org/10.1007/978-3-531-92639-1 reduction reactions (ORRs) in alkaline and acid media for several decades. Such macrocyclic complexes include transition-metal porphyrins (MPs) or phthalocyanines (MPcs)-like molecules, and nitrogen-chelated transition metal clusters in a carbon matrix (pyrolyzed M-N./C). Although extensive researc
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Birger P. Priddat,Christoph Meinekests unfortunately are still too high from a techno-economic standpoint, with approximately half of the total stack cost arising from the platinum catalysts. Therefore, the development of entirely non-platinum group metal (non-PGM) catalysts for the inherently slow oxygen reduction reaction (ORR) is
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Corporate Citizenship und Unternehmenskulturctive because they inherently provide well-defined structural models for describing the ORR not only in nature, for example, in cytochrome c oxidases, but also for electrocatalysts of industrial importance. The development of more efficient N.-macrocyclic complexes as electrocatalysts for the ORR re
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Aufbau und Wirkungsweise von Dampfturbinen,in the visible range, a rather high chemical stability and the ease at which their redox potential can be tuned by means of suitable substituents. A number of unsubstituted and substituted phthalocyanines can be directly used to prepare thin films on conducting substrates by means of different film-
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Quantum Inspired Intelligent Systems978-3-540-78532-3Series ISSN 1860-949X Series E-ISSN 1860-9503
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