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Anisotropic crystal growth of the S-layer of Bacillus sphaericus CCM 2177 at the air/water interface

机译:球形芽孢杆菌CCM 2177 S层在空气/水界面的各向异性晶体生长

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The isolated subunits of the crystalline bacterial cell surface layer (S-layer) from Bacillus sphaericus CCM 2177 show an inherent ability to reassemble at the air/water interface. The most important parameter for the recrystallization process is the calcium concentration in the subphase. Depending on this parameter, a broad spectrum of crystal morphologies ranging from tenuous, fractal-like structures to large monocrystalline patches was found. Cross-correlation averaging was used for identifying the position and orientation of morphological units in the crystal lattice and for improving the signal-to-noise ratio of fine image details. Under optimized recrystallization conditions, large perfectly crystalline monolayers were formed. Such large monolayers are the basis for using S-layers as patterning structures in molecular nanotechnology.
机译:来自球形芽孢杆菌CCM 2177的结晶细菌细胞表面层(S-层)的分离的亚基显示出在空气/水界面处重新组装的固有能力。重结晶过程中最重要的参数是子相中的钙浓度。根据该参数,发现了从微弱的分形状结构到大的单晶斑块的宽范围的晶体形态。互相关平均用于确定晶格中形态单元的位置和方向,并用于改善精细图像细节的信噪比。在优化的重结晶条件下,形成了较大的完美结晶单层。如此大的单分子层是在分子纳米技术中使用S层作为构图结构的基础。

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