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Three-dimensional hydrogen microscopy in diamond

机译:钻石中的三维氢显微镜

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A microprobe of protons with an energy of 17 million electron volts is used to quantitatively image three-dimensional hydrogen distributions at a lateral resolution better than 1 micrometer with high sensitivity. Hydrogen images of a <110>-textured undoped potycrystalline diamond film show that most of the hydrogen is located at grain boundaries. The average amount of hydrogen atoms along the grain boundaries is (8.1 +/- 1.5) x 10(14) per square centimeter, corresponding to about a third of a monolayer. The hydrogen content within the grain is below the experimental sensitivity of 1.4 x 10(16) atoms per cubic centimeter (0.08 atomic parts per million). The data prove a low hydrogen content within chemical vapor deposition-grown diamond and the importance of hydrogen at grain boundaries, for example, with respect to electronic properties of polycrystalline diamond.
机译:具有1700万电子伏特能量的质子微探针用于以高于1微米的横向分辨率对三维氢分布进行定量成像,且灵敏度很高。 <110>织构的未掺杂的多晶金刚石薄膜的氢图像显示,大多数氢位于晶界。沿晶界的氢原子的平均量为每平方厘米(8.1 +/- 1.5)x 10(14),大约相当于单层的三分之一。晶粒中的氢含量低于每立方厘米1.4 x 10(16)原子的实验灵敏度(百万分之0.08原子)。数据证明,在化学气相沉积生长的金刚石中氢含量低,并且氢在晶界处的重要性(例如,就多晶金刚石的电子性能而言)。

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