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Ferroelectric bismuth-titanate nanoplatelets and nanowires with a new crystal structure

机译:铁电铋钛nanoplatelets和纳米线与一个新的晶体结构

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摘要

Two different morphologies of ferroelectric bismuth titanate (Bi4Ti3O12) nanoparticles, i.e., nanoplatelets and nanowires, were synthesized by changing the concentration of NaOH during a hydrothermal treatment of precipitated Ti4+ and Bi3+ ions. The nanoparticles’ crystal structures were characterized using atomic-resolution imaging with a CS-probe-corrected scanning-transmission electron microscope in combination with X-ray diffractometry and Raman spectroscopy. The nanoplatelets (10 nm thick and from 50 nm to 200 nm wide) exhibit the Aurivillius-type layered-perovskite crystal structure that is characteristic of Bi4Ti3O12, whereas the nanowires (from 15 nm to 35 nm wide and from several hundreds of nm to several μm long) exhibit an entirely new structure with an orthorhombic unit cell (a = 3.804(1) Å, b = 11.816(3) Å, and c = 9.704(1) Å). The nanowire structure is composed of two structural layers alternating along the orthorhombic c-direction: a structural layer composed of two parallel layers of Bi atoms that resembles the (Bi2O2)2+ layer of the Aurivillius structure, and a structural layer composed of two parallel layers of Ti atoms, where every sixth Ti is replaced with Bi. Observations of the ferroelectric domains with transmission electron and piezo-response force microscopy indicated the ferroelectric nature of both nanostructures. The nanowire structure is a metastable polymorph of the bismuth titanate stabilized at the nanoscale. With annealing at temperatures above 500 °C the nanowire structure topotactically transforms into the Aurivillius structure.
机译:两种不同形态的铁电体钛酸铋(Bi4Ti3O12)纳米粒子,即nanoplatelets和纳米线合成在氢氧化钠的浓度变化热液沉淀四价和治疗Bi3 +离子。使用原子水平的特点成像与CS-probe-corrected扫描透射电子显微镜结合x射线衍射测量和拉曼光谱学。从50到200 nm宽)展览Aurivillius-type layered-perovskite水晶Bi4Ti3O12的结构特征,而纳米线(从15到35 nm宽,从几几百纳米到几个μm用一个长)表现出一种全新的结构斜方晶系的单位细胞(a = 3.804 (1) a, b =11.816(3)和c = 9.704(1))。结构是由两层结构组成的沿着斜方晶系的交替c-direction:结构层由两个平行的层类似的Bi原子(Bi2O2) 2 +层Aurivillius结构和结构层由两个平行层钛原子,在每个第六Ti Bi所取代。观察铁电域的透射电子和piezo-response力量显微镜显示的铁电性质纳米结构。钛酸铋的亚稳态变形稳定在纳米尺度上。温度高达500°C的纳米线结构Aurivillius topotactically转换结构。

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