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Magnetic field induced improvement of the arrangement of nanomagnets from the gas phase on S layers

机译:磁场诱导从S层上的气相中纳米磁镜的布置改善

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FePt nanoparticles from the gas phase are deposited onto regular two-dimensional bacterial surface layer proteins with a four-fold lattice symmetry and a lattice constant of 12.5 nm. Transmission electron microscopy shows that the particle arrangement adopts both, the symmetry and periodicity of the protein template. The influence of the particle density on both the degree of agglomeration and the regularity of the particle arrangement is studied. Depositing the particles in a magnetic field applied parallel to the substrate leads to a significant decrease in agglomeration and thereby to an increase in the fraction of regularly arranged particles at high particle densities.
机译:来自气相的纳米颗粒沉积在常规二维细菌表面层蛋白上,具有四倍的晶格对称性和12.5nm的晶格常数。透射电子显微镜表明,颗粒布置采用蛋白质模板的对称性和周期性。研究了颗粒密度对颗粒布置程度的影响和颗粒布置的规律性。在平行于基板施加的磁场中沉积颗粒导致聚集的显着降低,从而增加了在高粒子密度下规则排列的颗粒的级分的增加。

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