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Spectroscopic detection and theoretical confirmation of the role of Cr2(CO)5(C5R5)2 and .Cr(CO)2(ketene)(C5R5) as intermediates in carbonylation of N=N=CHSiMe3 to O=C=CHSiMe3 by .Cr(CO)3(C5R5) (R = H, CH3)
Journal article

Spectroscopic detection and theoretical confirmation of the role of Cr2(CO)5(C5R5)2 and .Cr(CO)2(ketene)(C5R5) as intermediates in carbonylation of N=N=CHSiMe3 to O=C=CHSiMe3 by .Cr(CO)3(C5R5) (R = H, CH3)

George C Fortman, Tamás Kégl, Qian-Shu Li, Xiuhui Zhang, Henry F Schaefer, 3rd, Yaoming Xie, R Bruce King, Joshua Telser and Carl D Hoff
Journal of the American Chemical Society, Vol.129(46), pp.14388-14400
2007-11-21
PMID: 17960906

Abstract

Temperature Electron Spin Resonance Spectroscopy Magnetic Resonance Spectroscopy Models, Chemical Molecular Conformation Silicon Dioxide - chemistry Carbon Monoxide - chemistry Chromium - chemistry Spectroscopy, Fourier Transform Infrared Hydrogen - chemistry Diazonium Compounds - chemistry Nitrogen - chemistry Ketones - chemistry Methane - chemistry Organometallic Compounds - chemistry Ethylenes - chemistry Kinetics

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InCites Highlights

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Collaboration types
Domestic collaboration
International collaboration
Citation topics
2 Chemistry
2.1 Synthesis
2.1.32 PPh3
Web Of Science research areas
Chemistry, Multidisciplinary
ESI research areas
Chemistry

UN Sustainable Development Goals (SDGs)

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#12 Responsible Consumption & Production

Source: InCites

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