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Titlebook: Applications of Organometallic Chemistry in the Preparation and Processing of Advanced Materials; John F. Harrod,Richard M. Laine Book 199

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發(fā)表于 2025-3-21 17:25:39 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Applications of Organometallic Chemistry in the Preparation and Processing of Advanced Materials
影響因子2023John F. Harrod,Richard M. Laine
視頻videohttp://file.papertrans.cn/160/159531/159531.mp4
學(xué)科分類NATO Science Series E:
圖書封面Titlebook: Applications of Organometallic Chemistry in the Preparation and Processing of Advanced Materials;  John F. Harrod,Richard M. Laine Book 199
影響因子In the ten years since the scientific rationale for the design,synthesis and application of inorganic and organometallic polymers(IOPs) was first conceptualised, we have witnessed the first tentativeexploration of IOPs as precursors to new materials, with effortsfocusing on the design and synthesis of novel ceramic precursors.Developing expertise led to precursor studies combined with thecharacterisation of the transformation processes that occur when IOPsare converted to ceramic materials. Now at maturity, the sciencepresented in this volume reveals the polymer precursor approach tomaterials synthesis together with examples of processing ceramicshapes for a range of mechanical properties, the development ofsophisticated, noninvasive analytical techniques, and IOP designrationales relying on well-defined processing-propertyrelationships. The production of multifunctional IOPs is described,providing ion conductivity, gas sensing, bioactivity, magneticproperties, etc., combined with processability. .The existence of well-defined IOPs and the exquisite control that canbe exerted on sol-gel systems now provide access to such avariety of mixed organic-organometallic and/or inorganic hyb
Pindex Book 1995
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發(fā)表于 2025-3-21 22:50:51 | 只看該作者
Geschichte der Sprunggelenk-Endoprothetik,ction into a sol or a gel which on drying and densification give a solid material. This allows the production of multicomponent materials with high purity and potentially greater chemical homogeneity at lower temperature. The molecular design of alkoxide precursors allows a chemical control over con
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發(fā)表于 2025-3-22 00:49:59 | 只看該作者
Geschichte der Sprunggelenk-Endoprothetik,ts are required, which should improve selectivity and utilize cheaper feedstocks. Zero waste processes are a clear goal of the chemical industries [1]. Most “new” catalysts will be based on gradual improvements of known materials, but there is a demand for new catalysts with properties different fro
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https://doi.org/10.1007/978-3-642-76361-8 oligomeric or colloidal systems can be used as precursors. The synthesis reaction is mainly based on a hydro- lysis and condensation reaction. Through the condensation reaction metal oxygen metal bonds are formed leading to a three-dimensional network. While in silica systems in the majority of the
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https://doi.org/10.1007/978-3-642-76361-8or the production of fibers [4], coatings [5] or reactive amorphous powders for sintering [6]. Two main routes are used to prepare the preceramic polymers, either the sol-gel process to get oxo-polymers, or organo-metallic chemistry to prepare essentially silicon-based polymers such as polysilanes,
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M. E. Safar,J. L. Cuche,B. M. Panniertz plates and polycrystalline alumina plates. The progress of pyrolysis chemistry can be easily monitored by FTIR on films supported on silicon, down to thicknesses as low as 10- 20 nm. The reactivity of PMS, or of polycarbosilane, with ammonia permits the homogeneous N-doping of these films and the
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David S. Janowsky,Lewis L. Juddle polysilacarbosilanes (PSCS) or polysilasilazanes (PSSZ) which were easily transformed into polycarbosilanes (PCS) or polycarbosilazanes (PCSZ) respectively. This strategy provides an access to SiC and SiCN fibre precursors with variable Si/C/N ratios. The mechanisms involved in the preparation of
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