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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Self-Assembly of Two- and Three-Dimensional Particle Arrays by Manipulating the Hydrophobicity of Silica Nanospheres
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Self-Assembly of Two- and Three-Dimensional Particle Arrays by Manipulating the Hydrophobicity of Silica Nanospheres

机译:通过操纵二氧化硅纳米球的疏水性二维和三维粒子阵列的自组装。

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The surface hydrophobicity of colloidal silica (SiO_2) nanospheres is manipulated by a chemical graft of alkyl chains with silane coupling agents or by physical adsorption of a cationic surfactant.The surface-modified SiO_2 spheres can be transferred from the aqueous phase to organic solvents and readily self-assemble at the water-air interface to form two-dimensional (2D) particle arrays.Closely packed particle monolayers are obtained by adjusting the hydrophilic/hydrophobic balance of the synthesized SiO_2 spheres and may further be transferred onto solid substrates layer by layer to form three-dimensional (3D) ordered particle arrays with a hexagonal close-packed (hcp) crystalline structure.The 2D monolayer and 3D multilayer SiO_2 films exhibit photonic crystal properties,which were determined by the UV-visible spectroscopic analysis in transmission mode.In the multilayer films,the Bragg diffraction maxima increased with an increase in thickness of the particle layers.The experimentally observed diffraction positions are in good agreement with those that were theoretically calculated.
机译:胶体二氧化硅(SiO_2)纳米球的表面疏水性可以通过烷基链与硅烷偶联剂的化学接枝或阳离子表面活性剂的物理吸附来控制。表面改性的SiO_2球可以从水相转移到有机溶剂中,并且容易通过调节合成的SiO_2球的亲水/疏水平衡获得紧密堆积的颗粒单层,并且可以进一步将其逐层转移到固体基质上,从而形成二维(2D)颗粒阵列。形成具有六方密堆积(hcp)晶体结构的三维(3D)有序粒子阵列.2D单层和3D多层SiO_2薄膜具有光子晶体特性,这是通过透射模式下的UV-可见光谱分析确定的。多层膜的布拉格衍射最大值随颗粒层厚度的增加而增加。实际观察到的衍射位置与理论计算的位置一致。

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