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Nanothin Spatial Dissipative Structures with Rotational Curving of the Grid around Three Mutually Perpendicular Directions
Doklady Physical Chemistry ( IF 0.9 ) Pub Date : 2019-10-01 , DOI: 10.1134/s0012501619100051
V. B. Malkov , G. P. Shveikin , S. V. Plaksin , V. G. Pushin , A. V. Malkov , O. V. Malkov , B. V. Shul’gin

Nanothin spatial dissipative structures (SDSs) produced by thermal gradient processing of an amorphous selenium film by means of one-sided heating of its lower surface at T = 413 K have been studied by transmission electron microscopy and microdiffraction. It has been established that the resulting nanothin SDSs of hexagonal selenium possess a specific curved habit and a nonlinear fan-shaped system of bending contours in their electron-microscopic image; the lattice of nanothin SDSs undergoes elastic-plastic rotational curvature around three mutually perpendicular directions; the lattice rotation angles of nanothin SDSs of hexagonal selenium reach 25° around [001], 32° around the direction perpendicular to [001] and lying in the plane of the amorphous film, and 35° around the direction perpendicular to the first two directions and not lying in the plane of the amorphous film.

中文翻译:

网格绕三个相互垂直方向旋转弯曲的纳米薄空间耗散结构

通过透射电子显微镜和微衍射研究了通过在 T = 413 K 下单侧加热非晶硒膜的下表面,通过热梯度处理产生的纳米薄空间耗散结构 (SDS)。已经确定,由此产生的六方硒纳米薄 SDS 在其电子显微图像中具有特定的弯曲习性和弯曲轮廓的非线性扇形系统;纳米薄SDS的晶格围绕三个相互垂直的方向发生弹塑性旋转曲率;六方硒纳米薄SDS的晶格旋转角在[001]附近达到25°,在垂直于[001]并位于非晶膜平面内的方向周围达到32°,
更新日期:2019-10-01
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