By Tristram Chivers
Chalcogen-nitrogen chemistry includes the examine of compounds that convey a linkage among nitrogen and sulfur, selenium or tellurium atoms. Such reviews have either primary and functional value. A consultant to Chalcogen-Nitrogen Chemistry examines the position of chalcogen-nitrogen compounds in components starting from solid-state inorganic chemistry to biochemistry. The dialogue covers primary questions in regards to the bonding in electron-rich platforms, in addition to strength functional functions of polymers and fabrics with novel magnetic or electric houses. This ebook is the one account of this crucial subject to seem within the final twenty-five years, and paired with its wide literature insurance of very contemporary advancements, this finished advisor is key for an individual operating within the box. The therapy is exclusive in supplying a comparability of sulfur, selenium and tellurium structures, with an process meant to stress common innovations that would be precious to the non-specialist. each one bankruptcy is designed to be self-contained, and there are large cross-references among chapters.
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Extra resources for A Guide To Chalcogen-Nitrogen Chemistry
42, 5843 (2003); (c) R. Hiages, J. A. Boatz, A. Vij, M. Gerken, S. Schneider, T. Schroer and K. O. Christe, Angew. , Int. Ed. , 42, 5847 (2003). 37. G. Wolmershäuser, M. Schnauber and T. Wilhelm, J. Chem. , Chem. , 573 (1984). 38. (a) H. Klüver and O. Glemser, Z. , 32B, 1209 (1977); (b) Z. Xiaoqing, L. Fengyi, S. Qiao, G. Maofa, Z. Jianping, A. Xicheng, M. Lingpeng, Z. Shijun and W. Dianxun, Inorg. , 43, 4799 (2004). 39. T. J. Maricich, J. Am. Chem. , 90, 7179 (1968). 40. J. Bojes, T. Chivers, A.
A) T. M. Klapötke, B. Krumm, P. Mayer, H. Piotrowski, O. P Ruscitti and A. Schiller, Inorg. , 41, 1184 (2002); (b) T. M. Klapötke, B. Krumm, P. Mayer and I. Schwab, Angew. , Int. Ed. , 42, 5843 (2003); (c) R. Hiages, J. A. Boatz, A. Vij, M. Gerken, S. Schneider, T. Schroer and K. O. Christe, Angew. , Int. Ed. , 42, 5847 (2003). 37. G. Wolmershäuser, M. Schnauber and T. Wilhelm, J. Chem. , Chem. , 573 (1984). 38. (a) H. Klüver and O. Glemser, Z. , 32B, 1209 (1977); (b) Z. Xiaoqing, L. Fengyi, S.
Wollert, B. Neumüller and K. Dehnicke, Z. Anorg. Allg. , 616, 191 (1992). 53. W. Massa, C. Lau, M. Möhlen, B. Neumüller and K. , Int. Ed. , 37, 2840 (1998). 54. J. Passmore, G. Schatte and T. S. Cameron, J. Chem. , Chem. , 2311 (1995). Chapter 3 Applications of Physical Methods This chapter will provide an overview, illustrated with recent examples, of some applications of the most commonly used physical methods for the characterization of chalcogen–nitrogen compounds. 1 Diffraction Techniques The structures of chalcogen–nitrogen compounds are frequently unpredictable.
A Guide To Chalcogen-Nitrogen Chemistry by Tristram Chivers