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Structural and optical properties of individual Zn2GeO4 particles embedded in ZnO

机译:在ZnO中嵌入的单个Zn2GeO4颗粒的结构和光学性质

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Functionalizing transparent conducting oxides (TCOs) is an intriguing approach to expand the tunability and operation of optoelectronic devices. For example, forming nanoparticles that act as quantum wells or barriers in zinc oxide (ZnO), one of the main TCOs today, may expand its optical and electronic tunability. In this work, 800 keV Ge ions have been implanted at a dose of 1 x 10(16) cm(-2) into crystalline ZnO. After annealing at 1000 degrees C embedded disk-shaped particles with diameters up to 100 nm are formed. Scanning transmission electron microscopy shows that these are particles of the trigonal Zn2GeO4 phase. The particles are terminated by atomically sharp facets of the type {1 1 (2) over bar 0}, and the interface between the matrix and particles is decorated with misfit dislocations in order to accommodate the lattice mismatch between the two crystals. Electron energy loss spectroscopy has been employed to measure the band gap of individual nanoparticles, showing an onset of band-to-band transitions at 5.03 +/- 0.02 eV. This work illustrates the advantages of using STEM characterization methods, where information of structure, growth, and properties can be directly obtained.
机译:官能化透明导电氧化物(TCOS)是扩展光电器件的可调性和操作的有趣方法。例如,在当今的主要TCOS之一时,形成充当量子孔或氧化锌(ZnO)中的量子孔或屏障的纳米颗粒可以扩大其光学和电子可调性。在这项工作中,已经将800keV Ge离子以1×10(16 )cm(-2)的剂量植入到结晶ZnO中。在1000摄氏度以最高可达100nm的嵌入式圆盘形颗粒退火之后。扫描透射电子显微镜表明这些是Trigonal Zn2GeO4相的颗粒。颗粒由{11(2)型上方的{11(2)型}的原子尖锐的刻面终止,并且基质和颗粒之间的界面以错配脱位装饰,以适应两个晶体之间的晶格失配。已经采用电子能损光谱测量单个纳米颗粒的带隙,显示5.03 +/- 0.02eV的带状带转换的发作。该工作说明了使用茎表征方法的优点,可以直接获得结构,生长和性质的信息。

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