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hubeiww木蟲(chóng) (著名寫(xiě)手)
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[資源]
Nanoscale最新綜述:Shape control of inorganic nanoparticles from solution
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形貌可控的無(wú)機(jī)納米材料使各種無(wú)機(jī)納米材料具有各種新穎的或可調(diào)控的性質(zhì),而這些新穎、可調(diào)控的性質(zhì)使無(wú)機(jī)納米材料在日益發(fā)展的納米科學(xué)和潛在應(yīng)用中起著非常巨大的作用。目前,很多研究的著重點(diǎn)都在通過(guò)各種新穎的方法和過(guò)程、條件控制得到形狀新穎的無(wú)機(jī)納米材料,卻忽視了貫穿所有研究過(guò)程中的成核和生長(zhǎng)機(jī)理是理解、控制形貌和粒徑的關(guān)鍵。 關(guān)注Nanoscale最新綜述: Abstract: Inorganic materials with controllable shapes have been an intensely studied subject in nanoscience over the past decades. Control over novel and anisotropic shapes of inorganic nanomaterials differing from those of bulk materials leads to unique and tunable properties for widespread applications such as biomedicine, catalysis, fuels or solar cells and magnetic data storage. This review presents a comprehensive overview of shape-controlled inorganic nanomaterials via nucleation and growth theory and the control of experimental conditions (including supersaturation, temperature, surfactants and secondary nucleation), providing a brief account of the shape control of inorganic nanoparticles during wet-chemistry synthetic processes. Subsequently, typical mechanisms for shape-controlled inorganic nanoparticles and the general shape of the nanoparticles formed by each mechanism are also expounded. Furthermore, the differences between similar mechanisms for the shape control of inorganic nanoparticles are also clearly described. The authors envision that this review will provide valuable guidance on experimental conditions and process control for the synthesis of inorganic nanoparticles with tunable shapes in the solution state. http://pubs.rsc.org/en/content/a ... 07681a#!divAbstract |
納米技術(shù)與能源及模擬 | Allen的英文原版+百科 | 外語(yǔ)學(xué)習(xí) | 我的文件——值得收藏 |
Allen的著名期刊集 | Nanoscale | 納米材料 | Allen的材料學(xué) |
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