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Growth Kinetics of Nanocrystals and Nanorods by Employing Small-angle X-ray Scattering (SAXS) and Other Techniques 被引量:2
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作者 Kanishka BISWAS Neenu VARGHESE c.n.r.rao 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2008年第4期615-627,共13页
In this article, we report the results of our detailed investigations of the growth kinetics of zero-dimensional nanocrystals as well as one-dimensional nanorods by the combined use of small angel X-ray scattering (S... In this article, we report the results of our detailed investigations of the growth kinetics of zero-dimensional nanocrystals as well as one-dimensional nanorods by the combined use of small angel X-ray scattering (SAXS), transmission electron microscopy (TEM) along with other physical techniques. The study includes growth kinetics of gold nanocrystals formed by the reduction of HAuCl4 by tetrakis(hydroxymethyl) phosphonium chloride in aqueous solution, of CdSe nanocrystals formed by the reaction of cadmium stearate and selenium under solvothermal conditions, and of ZnO nanorods formed by the reaction of zinc acetate with sodium hydroxide under solvothermal conditions in the absence and presence of capping agents. The growth of gold nanocrystals does not follow the diffusion-limited Ostwald ripening, and instead follows a Sigmoidal rate curve. The heat change associated with the growth determined by isothermal titration calorimetry is about 10 kcal·mol^-1 per I nm increase in the diameter of the nanocrystals. In the case of CdSe nanocrystals also, the growth mechanism deviates from diffusion-limited growth and follows a combined model containing both diffusion and surface reaction terms. Our study of the growth kinetics of uncapped and poly(vinyl pyrollidone) (PVP)-capped ZnO nanorods has yielded interesting insights. We observe small nanocrystals next to the ZnO nanorods after a lapse of time in addition to periodic focusing and defocusing of the width of the length distribution. These observations lend support to the diffusion-limited growth model for the growth of uncapped ZnO nanorods. Accordingly, the time dependence on the length of uncapped nanorods follows the L3 law as required for diffusion-limited Ostwald ripening. The PVP-capped nanorods, however, show a time dependence, which is best described by a combination of diffusion (L^3) and surface reaction (L^2) terms. 展开更多
关键词 Growth kinetics Gold nanocrystals CdSe nanocrystals ZnO nanorods Small angle X-ray scattering Transmission electron microscopy Ostwald ripening and sigmoidal growth
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在通讯、能源和交通运输方面需要革新的高技术材料
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作者 c.n.r.rao 王凌云 史崇生 《世界科学》 1990年第3期33-35,共3页
引言高技术材料已经对人类生活的质量产生了巨大的影响.—个国家的兴衰程度几乎与利用这些材料的数量直接相关。事实上,我们可以把利用高技术材料的量作为一个指数,据此把发达国家与发展中国家明显地区别开来。过去几年中,发达国家在这... 引言高技术材料已经对人类生活的质量产生了巨大的影响.—个国家的兴衰程度几乎与利用这些材料的数量直接相关。事实上,我们可以把利用高技术材料的量作为一个指数,据此把发达国家与发展中国家明显地区别开来。过去几年中,发达国家在这些高技术工业方面的投资是巨大的,某些材料的投资得到了天文数字大小。当今发展最快的、或许也是社会最需要的就是与材料有关的工业。不幸的是。 展开更多
关键词 材料 高技术材料 通讯 能源 交通
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