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Surface conductive layers on (111) diamonds after oxygen treatments

机译:氧处理后(111)金刚石上的表面导电层

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摘要

Surface conductive layers (SCL) on oxidized (111) diamonds with smooth surfaces after exposure to air were detected and characterized by Hall effect measurements and Schottky junction characterizations. The reproducibility of the SCL is confirmed by a sequence of wet chemical oxidation treatments. The SCL vanishes by thermal annealing at temperature higher than 460 K in He atmosphere, and recovers in air. Hall effect measurements and Schottky junction properties show that the conductivity is p-type with a sheet hole concentrations around of 10~(12) cm~(-2) and Hall mobilities between 5 and 130 cm~2 /V s. Furthermore, Schottky junction characteristics indicate that the Fermi level is unpinned at the (111) surface. These characteristics are similar to those generated by hydrogen termination, and are discussed in the frame hood of surface carbon dangling bond passivation most likely by OH molecules.
机译:在暴露于空气后,具有光滑表面的氧化(111)金刚石上的表面导电层(SCL)被检测到并通过霍尔效应测量和肖特基结表征进行表征。通过一系列湿式化学氧化处理可以确认SCL的可重复性。 SCL通过在He气氛中高于460 K的温度下进行热退火而消失,并在空气中回收。霍尔效应测量和肖特基结性质表明,电导率是p型的,板孔浓度约为10〜(12)cm〜(-2),霍尔迁移率介于5和130 cm〜2 / V s之间。此外,肖特基结特性表明费米能级未固定在(111)表面。这些特性与氢封端所产生的特性相似,并在表面碳悬挂键钝化的框架中最有可能被OH分子讨论。

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