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Synthesis and regular array formation of nano-particles assisted by protein

机译:蛋白质辅助纳米粒子的合成与规则排列

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One of the important points in synthesis of nano-particles (NPs) is regulation of the size of particles. Use of a protein cavity as a grow field of NP is one candidate procedure to make the size uniform. Here fabrication of nanometric aluminium and indium particles using protein, ferritin, are described. Aluminium NPs were observed as nano-crystals however indium NPs were amorphous. The indium NPs thus formed have uniform spherical shape with diameter of 6.6 ± 0.5 nm, while aluminium NPs were somewhat irregular in shape with about 6 nm diameter. At some special condition, proteins are going to crystallize and that would provide regularly arranged sites for NPs. This means crystallization of proteins provides regular array of NPs. Regular two-dimensional (2D) arrays of indium nanoparticles are successfully produced by crystallising ferritin with indium NP (In-ferritin) on a solid surface using the denatured protein film method1 or direct spreading. The lattice constant of NP arrays obtained by the denatured protein film method is 13.3 nm with hexagonal packing, and arrays of more than 4 μm~2 in area can be obtained by transfer onto silicon wafer. Square lattice with spacing of 9.3 nm is also obtained by direct spreading of salt free In-ferritin on solid surface. The square lattice is expect to be bilayer because spacing of 9.3 nm cannot be performed by monolayer.
机译:纳米颗粒(NPs)合成的重要点之一是调节颗粒大小。使用蛋白质腔作为NP的生长场是使大小均匀的一种候选方法。这里描述了使用蛋白质铁蛋白制造纳米铝和铟颗粒。观察到铝NP为纳米晶体,但是铟NP为非晶态。这样形成的铟NP具有均匀的球形形状,直径为6.6±0.5nm,而铝NP的形状有些不规则,直径约为6nm。在某些特殊条件下,蛋白质会结晶,这将为NP提供规则排列的位点。这意味着蛋白质的结晶可提供规则的NP阵列。铟纳米颗粒的规则二维(2D)阵列是通过使用变性蛋白膜方法1或直接铺展在固体表面上用铟NP(铁蛋白)结晶铁蛋白而成功制备的。通过变性蛋白膜方法获得的NP阵列的晶格常数为13.3nm,具有六边形堆积,并且可以通过转移到硅晶片上而获得面积大于4μm〜2的阵列。通过将无盐In-铁蛋白直接铺展在固体表面上,可以获得间距为9.3 nm的方晶格。由于不能通过单层执行9.3 nm的间距,因此期望正方形格子为双层。

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