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Metalloenzymes As Inspirational Electrocatalysts For Artificial Photosynthesis From Mechanism To Model Devices 1st Edition Andreas S J L Bachmeier Auth

  • SKU: BELL-5736850
Metalloenzymes As Inspirational Electrocatalysts For Artificial Photosynthesis From Mechanism To Model Devices 1st Edition Andreas S J L Bachmeier Auth
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Metalloenzymes As Inspirational Electrocatalysts For Artificial Photosynthesis From Mechanism To Model Devices 1st Edition Andreas S J L Bachmeier Auth instant download after payment.

Publisher: Springer International Publishing
File Extension: PDF
File size: 8.74 MB
Pages: 264
Author: Andreas S. J. L. Bachmeier (auth.)
ISBN: 9783319470689, 9783319470696, 331947068X, 3319470698
Language: English
Year: 2017
Edition: 1

Product desciption

Metalloenzymes As Inspirational Electrocatalysts For Artificial Photosynthesis From Mechanism To Model Devices 1st Edition Andreas S J L Bachmeier Auth by Andreas S. J. L. Bachmeier (auth.) 9783319470689, 9783319470696, 331947068X, 3319470698 instant download after payment.

This thesis describes a series of investigations designed to assess the value of metalloenzymes in systems for artificial and adapted photosynthesis. The research presented explores the interplay between inherent enzyme properties such as structure, rates and thermodynamics, and the properties of the semiconducting materials to which the enzyme is attached. Author, Andreas Bachmeier provides a comprehensive introduction to the interdisciplinary field of artificial photosynthesis, allowing the reader to grasp the latest approaches being investigated, from molecular systems to heterogeneous surface catalysis. Bachmeier’s work also uses metalloenzymes to highlight the importance of reversible catalysts in removing the burden of poor electrocatalytic rates and efficiencies which are common characteristics for most artificial photosynthesis systems. Overall, this thesis provides newcomers and students in the field with evidence that metalloenzymes can be used to establish new directions in artificial photosynthesis research.

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