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In situ disordering of monoclinic titanium monoxide Ti5O5 studied by transmission electron microscope TEM

机译:透射电子显微镜TEM研究单斜一氧化钛Ti5O5的原位无序

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摘要

The superlattice and domain structures exhibited by ordered titanium monoxide Ti5O5 are disrupted by low energy electron beam irradiation. The effect is attributed to the disordering of the oxygen and titanium sublattices. This disordering is caused by the displacement of both oxygen and titanium atoms by the incident electrons and results in a phase transformation of the monoclinic phase Ti5O5 into cubic B1 titanium monoxide. In order to determine the energies required for the displacement of titanium or oxygen atoms, i.e. threshold displacement energies, a systematic study of the disappearance of superstructure reflections with increasing electron energy and electron bombardment dose has been performed in situ in a transmission electron microscope (TEM). An incident electron energy threshold between 120 and 140 keV has been observed. This threshold can be ascribed to the displacements of titanium atoms with 4 as well as with 5 oxygen atoms as nearest neighbors. The displacement threshold energy of titanium atoms in Ti5O5 corresponding with the observed incident electron threshold energy lies between 6.0 and 7.5 eV. This surprisingly low value can be explained by the presence of either one or two vacant oxygen lattice sites in the nearest neighbors of all titanium atoms.
机译:有序一氧化钛Ti5O5表现出的超晶格和畴结构被低能电子束辐照破坏。该作用归因于氧和钛亚晶格的无序。这种无序现象是由于入射电子将氧和钛原子置换而引起的,并导致单斜晶相Ti5O5转变为立方B1一氧化钛。为了确定钛或氧原子位移所需的能量,即阈值位移能量,已经在透射电子显微镜(TEM)中对随着电子能量和电子轰击剂量的增加而消失的上层结构反射消失进行了系统研究。 )。已经观察到120至140 thresholdkeV的入射电子能量阈值。该阈值可以归因于钛原子在4个以及5个氧原子附近的位移。与观察到的入射电子阈值能量相对应的Ti5O5中钛原子的位移阈值能量在6.0和7.5 eV之间。这个惊人的低值可以通过在所有钛原子的最近邻居中存在一个或两个空的氧晶格位点来解释。

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