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- W2055937551 abstract "Abstract Recent developments in the understanding of the biosynthesis of the active site of the nitrogenase enzyme, the structure of the iron centre of [Fe]-hydrogenase and the structure and biomimetic chemistry of the [FeFe] hydrogenase H-cluster as deduced by application of X-ray spectroscopy are reviewed. The techniques central to this work include X-ray absorption spectroscopy either in the form of extended X-ray absorption fine structure (EXAFS), X-ray absorption near-edge structure (XANES) and nuclear resonant vibrational spectroscopy (NRVS). Examples of the advances in the understanding of the chemistry of the system through integration of a range of spectroscopic and computational techniques with X-ray spectroscopy are highlighted. The critical role played by ab initio calculation of structural and spectroscopic properties of transition-metal compounds using density functional theory (DFT) is illustrated both by the calculation of nuclear resonance vibrational spectroscopy (NRVS) spectra and the structures and spectra of intermediates through the catalytic reactions of hydrogenase model compounds." @default.
- W2055937551 created "2016-06-24" @default.
- W2055937551 creator A5038589136 @default.
- W2055937551 creator A5088996535 @default.
- W2055937551 date "2010-02-01" @default.
- W2055937551 modified "2023-10-17" @default.
- W2055937551 title "Applications of X-ray absorption spectroscopy to biologically relevant metal-based chemistry" @default.
- W2055937551 cites W1484911436 @default.
- W2055937551 cites W1963921746 @default.
- W2055937551 cites W1964433007 @default.
- W2055937551 cites W1965932921 @default.
- W2055937551 cites W1971396352 @default.
- W2055937551 cites W1979011995 @default.
- W2055937551 cites W1983613885 @default.
- W2055937551 cites W1983925681 @default.
- W2055937551 cites W1984603044 @default.
- W2055937551 cites W1986546695 @default.
- W2055937551 cites W1986820461 @default.
- W2055937551 cites W1987969019 @default.
- W2055937551 cites W1989119939 @default.
- W2055937551 cites W1995024578 @default.
- W2055937551 cites W1995669340 @default.
- W2055937551 cites W1997904880 @default.
- W2055937551 cites W1997965932 @default.
- W2055937551 cites W2005285870 @default.
- W2055937551 cites W2005425122 @default.
- W2055937551 cites W2008666852 @default.
- W2055937551 cites W2010418135 @default.
- W2055937551 cites W2011910038 @default.
- W2055937551 cites W2012225860 @default.
- W2055937551 cites W2013266875 @default.
- W2055937551 cites W2014487572 @default.
- W2055937551 cites W2014492514 @default.
- W2055937551 cites W2015068786 @default.
- W2055937551 cites W2022887219 @default.
- W2055937551 cites W2028465433 @default.
- W2055937551 cites W2039568374 @default.
- W2055937551 cites W2039892768 @default.
- W2055937551 cites W2043776402 @default.
- W2055937551 cites W2045411127 @default.
- W2055937551 cites W2047470444 @default.
- W2055937551 cites W2047555761 @default.
- W2055937551 cites W2047560937 @default.
- W2055937551 cites W2048870886 @default.
- W2055937551 cites W2050271687 @default.
- W2055937551 cites W2052350030 @default.
- W2055937551 cites W2052428227 @default.
- W2055937551 cites W2053009704 @default.
- W2055937551 cites W2055124888 @default.
- W2055937551 cites W2056420699 @default.
- W2055937551 cites W2056872218 @default.
- W2055937551 cites W2058978568 @default.
- W2055937551 cites W2059837420 @default.
- W2055937551 cites W2060869358 @default.
- W2055937551 cites W2061407935 @default.
- W2055937551 cites W2062443654 @default.
- W2055937551 cites W2063448276 @default.
- W2055937551 cites W2066710762 @default.
- W2055937551 cites W2068453999 @default.
- W2055937551 cites W2068718415 @default.
- W2055937551 cites W2071541143 @default.
- W2055937551 cites W2072348323 @default.
- W2055937551 cites W2074309068 @default.
- W2055937551 cites W2077845926 @default.
- W2055937551 cites W2078678839 @default.
- W2055937551 cites W2080075262 @default.
- W2055937551 cites W2080469122 @default.
- W2055937551 cites W2080478920 @default.
- W2055937551 cites W2081885195 @default.
- W2055937551 cites W2083456818 @default.
- W2055937551 cites W2085795935 @default.
- W2055937551 cites W2088010647 @default.
- W2055937551 cites W2089435321 @default.
- W2055937551 cites W2090741580 @default.
- W2055937551 cites W2092638302 @default.
- W2055937551 cites W2093604798 @default.
- W2055937551 cites W2094061506 @default.
- W2055937551 cites W2094712909 @default.
- W2055937551 cites W2094903976 @default.
- W2055937551 cites W2104774802 @default.
- W2055937551 cites W2104796556 @default.
- W2055937551 cites W2119741261 @default.
- W2055937551 cites W2138564092 @default.
- W2055937551 cites W2157017647 @default.
- W2055937551 cites W2157781920 @default.
- W2055937551 cites W2170494791 @default.
- W2055937551 cites W2331668115 @default.
- W2055937551 cites W2583514012 @default.
- W2055937551 cites W2949536547 @default.
- W2055937551 cites W3023056414 @default.
- W2055937551 cites W33821214 @default.
- W2055937551 cites W4210963410 @default.
- W2055937551 doi "https://doi.org/10.1016/j.radphyschem.2009.03.072" @default.
- W2055937551 hasPublicationYear "2010" @default.
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