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Titlebook: Inclusion Chemistry with Zeolites: Nanoscale Materials by Design; Norman Herron,David R. Corbin Book 1995 Springer Science+Business Media

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發(fā)表于 2025-3-21 19:28:16 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Inclusion Chemistry with Zeolites: Nanoscale Materials by Design
編輯Norman Herron,David R. Corbin
視頻videohttp://file.papertrans.cn/464/463233/463233.mp4
叢書名稱Topics in Inclusion Science
圖書封面Titlebook: Inclusion Chemistry with Zeolites: Nanoscale Materials by Design;  Norman Herron,David R. Corbin Book 1995 Springer Science+Business Media
描述Zeolites, with their crystalline microporous structures, are cordial hosts to a wide variety of guests. However, it was the abrupt and unexpected departure of one of these guests (water) from a host (stilbite) on heating which led Cronstedt, in 1756, to coin the term "zeolite" (from the Greek meaning "boiling stone") to describe this material. Since that time, approximately 40 different naturally-occurring zeolites have been discovered on earth. Recent studies of meteorite compositions have shown that these guest-host materials (e. g. , sodalite) occur in other parts of the universe as well. However, it wasn‘t until the twentieth century that synthetic routes to zeolites and other non-aluminosilicate molecular sieves were discovered. In addition, with the development of X-ray diffraction and the various spectroscopies, better understanding of the nature of the cavities, cages, and channels of these materials has led to the industrial exploitation of their guest-host properties. The world of zeolites has now expanded into a greater than 2 billion pound per year business, with major applications in detergent formulations, catalysis, and as adsorbents and desiccants. Their economic im
出版日期Book 1995
關(guān)鍵詞Metall; Organometallic chemistry; X-Ray; chemistry; crystal; diffraction; nuclear magnetic resonance (NMR)
版次1
doihttps://doi.org/10.1007/978-94-011-0119-6
isbn_softcover978-94-010-4057-0
isbn_ebook978-94-011-0119-6Series ISSN 0923-6732
issn_series 0923-6732
copyrightSpringer Science+Business Media Dordrecht 1995
The information of publication is updating

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發(fā)表于 2025-3-21 21:28:24 | 只看該作者
Structure-Direction in Zeolite Synthesis,compositions are commercially available and used in refining and chemical processing as catalysts, absorption materials, and drying agents, as well as in ion-exchange operations [., .]. Zeolites and molecular sieves show a strikingly close relationship between their microscopic structure and macrosc
板凳
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Structural Case Studies of Inclusion Phenomena in Zeolites: Xe in RHO and Stilbene in ZSM-5,ntly been used as platforms for the inclusion chemistry described in this volume. Their unique structures [.] result in the shape selectivity [.] desirable in both classes of applications. The characterization of the position and orientation of absorbed species, their preferred sorption sites, and t
地板
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Zeolite-Included Molecules Studied by NMR,ature of processes occurring while molecules are absorbed, it is necessary to measure the properties of these absorbed molecules. Very frequently, the absorbed phases are neither liquid, gas, nor solid, being strongly influenced by the proximity of the zeolite structure. Aside, then, from the practi
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Absorbed Molecules in Microporous Hosts - Computational Aspects,field of molecular biology [.], where pharmaceutical companies have a considerable investment in computational resources. In the area of materials science, important advances in the development of computational techniques have also been made in the simulation of materials themselves to both reproduc
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Coordination Chemistry in Zeolites,l ion (TMI) complexes in molecular sieves have three main characteristics: (1) the complexes have strongly reduced mobility with respect to their solution mobility and deactivating aggregations may be avoided; (2) complexation with extra-lattice ligands is in competition with complexation to lattice
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Photochemistry of Organic Molecules Within Zeolites: Role of Cations,molecules in a fixed orientation so as to initiate reactions. Often, such media do not remain “passive” and they themselves interact with the guest molecules and influence their photobehavior. When this occurs the material is considered to be “active” [.]. In this chapter, we are concerned with zeol
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