£107.85

Springer Metalloenzymes as Inspirational Electrocatalysts for Artificial Photosynthesis: From Mechanism to Model Devices (Springer Theses)

Price data last checked 10 day(s) ago - will refresh soon

View at Amazon

We'll watch every seller, every day. One email when your price arrives.

This is the most expensive it has ever been. Walk away.

£108 today · previous high £108 · all-time low £107

NEW HERE?

Amazon shows you one price. We show you all of them.

Tosheroon watches Amazon prices so you don't have to. Every product on Amazon has a price history — we make it visible. Set the price you'd actually pay, and we'll email you the second it gets there. No app, no account, one email.

WHAT'S ON THIS PAGE

↓ Price chart
when this has been cheap or pricey
↓ Forecast
where the price is heading next
↓ Statistics
all-time high & low, recent range
↑ Price alert
name your number, we'll email you

Price History & Forecast

Grey patches = out of stock. Cheaper = lower on the chart. Hover for exact prices.

Last 81 days · 81 data points (no recent data)

Historical
Generating forecast…
£107.85 £107.38 £107.48 £107.58 £107.69 £107.79 £107.89 26 April 2026 16 May 2026 05 June 2026 25 June 2026 15 July 2026

Price Distribution

Price distribution over 81 days • 1 price levels

Days at Price
81 days 0 20 41 61 81 £108 Days at Price

Price Analysis

Most common price: £108 (81 days, 100.0%)

Price range: £108 - £108

Price levels: 1 different prices over 81 days

Description

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. From the Back Cover 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. About the Author Andreas Bachmeier studied chemistry at the University of Erlangen, Germany, where he was first introduced to the science of solar energy conversion. In addition, he was a scholar of the Bavarian Elite Academy, attending lectures on economics, philosophy, psychology, and other related disciplines. Andreas prepared his Diploma thesis in artificial photosynthesis under the guidance of Dr. Heinz Frei at Lawrence Berkeley National Laboratory, USA; work, for which he was awarded the ‘Zerweck’ prize of the University of Erlangen.Following a year in the chemical industry working in Novara (Italy) and Munich, he moved to the United Kingdom to pursue his doctoral studies in biological inorganic chemistry at the University of Oxford, where he worked, as St John’s College Graduate Scholar, under the supervision of Prof. Fraser Armstrong FRS. Upon finishing his doctoral work, Andreas joined the catalyst business of specialty chemicals group Clariant in 2015. Currently his, work centres on projects dealing with selective hydrogenation and monomer purification / contaminant removal.

Product Specifications

Format
paperback
Domain
Amazon UK
Release Date
04 July 2018
Listed Since
05 July 2018

Barcode

No barcode data available