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Titlebook: Chemistry of Tin; Peter J. Smith (Honorary Research Fellow) Book 1998Latest edition Chapman & Hall 1998 inorganic chemistry.iron.metals.sp

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书目名称Chemistry of Tin
编辑Peter J. Smith (Honorary Research Fellow)
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图书封面Titlebook: Chemistry of Tin;  Peter J. Smith (Honorary Research Fellow) Book 1998Latest edition Chapman & Hall 1998 inorganic chemistry.iron.metals.sp
描述In common with the editor of the first edition, my own personal involvement with tin chemistry began when I had the privilege of studying for a PhD degree under the supervision of Professor Alwyn G. Davies FRS at University College London (UCL) almost exactly 30 years ago. Then, following 21 years‘ service with the International Tin Research Institute, it was a great pleasure for me when the wheel turned full circle and, in 1994, Alwyn - now an Emeritus Professor - asked me to return to UCL as an Honorary Research Fellow in the Chemistry Department. One of my first tasks was when I received an invitation from Blackie A&P to edit the second edition of the Chemistry of Tin, which I was delighted to accept, since it enabled me to continued my life-long interest in tin chemistry and to maintain contact with my former friends and colleagues, many of whom have contributed to this book.
出版日期Book 1998Latest edition
关键词inorganic chemistry; iron; metals; spectroscopy; tin
版次2
doihttps://doi.org/10.1007/978-94-011-4938-9
isbn_softcover978-94-010-6072-1
isbn_ebook978-94-011-4938-9
copyrightChapman & Hall 1998
The information of publication is updating

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Organometallic compounds of tetravalent tin,rolific areas of chemical activity. As a result of the serendipitous coupling of an arsenal of sophisticated analytical techniques (Chapters 13 and 14) and widespread industrial applications (Chapter 12) the many facets of this field have attracted the attention of chemists of all persuasions, as we
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Organometallic compounds of bivalent tin, concentrated on the chemistry of relatively stable stannylenes and stannocenes and the preparation of new, even more stable compounds. The potential for bivalent organom et al. lic tin species in organic synthesis has also been studied. This chapter includes a description of the work covered in the
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,Tin—metal bonded compounds,her m et al., including boron and silicon. Attention has been concentrated on work published since 1970. Reviews [1–12] include an account of applications to areas of chemistry including catalysis, hydrogenation and isomerization of alkenes and polymerization [11]. For comprehensive lists of compoun
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Industrial uses of tin chemicals, and carbon. Compounds containing an organic anion in the molecule, but not containing tin-carbon bonds, are here referred to as inorganic compounds. The applications of these two classes of compound tend to be separate although there is some overlap in a few cases. In recent years, the consumption
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Solid state NMR spectroscopy of tin compounds,. However, with very few exceptions exact information on the spatial structures of molecules can only be obtained by subjecting them to single crystal X-ray diffraction procedures. These can of course only be applied when suitable single crystals are available, and this is in general not the case. T
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,119mSn Mössbauer studies on tin compounds,ure and bonding in the m et al. environment (mainly in organotins) and (3) the dynamics of tin nuclei, the latter possibly correlated to the nature of the substrate (mono- or polymeric). Measurements are effected on solids (crystalline as well as amorphous), gels and solutions (frozen to glassy phas
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