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首页> 外文期刊>ACS applied materials & interfaces >Monolayer Cubic Boron Nitride Terminated Diamond (111) Surfaces for Quantum Sensing and Electron Emission Applications
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Monolayer Cubic Boron Nitride Terminated Diamond (111) Surfaces for Quantum Sensing and Electron Emission Applications

机译:用于量子传感和电子发射应用的单层立方氮化物封端的金刚石(111)表面

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摘要

Monolayer cubic boron (B) nitride (N) terminated diamond (111) surfaces are proposed and investigated using density functional theory. The carbon (C)-N-B-terminated diamond (111) surface with a monolayer coverage of hydrogen and the C-N-B-terminated diamond (111) surface with a monolayer coverage of fluorine [named C-N-B-F-terminated (111) surface] have positive electron affinities (PEAS) with no inter-band gap states and nearly perfect alignment of nitrogen vacancy (NV). Thus, they could potentially be applied in NV-based quantum sensors. The C-B-N-terminated diamond (111) surface with a monolayer coverage of hydrogen [named C-B-N-H-terminated (111) surface], which has negative EAs (NEAs) and an adsorption energy of -3.51 eV, could potentially be employed in electron emission devices. Specifically, C-N-B-F- and C-B-N-H-terminated diamond (111) surfaces have the largest PEA (4.48 eV) and NEA (-4.00 eV), respectively, of any reported diamond surfaces. We also propose a formalism to construct multiple dipole structures on diamond surfaces to yield extremely large EAs.
机译:提出和研究了单层立方硼(B)氮化物(N)封端的金刚石(111)表面,并使用密度函数理论研究。碳(C)-NB封端的金刚石(111)表面具有单层覆盖的氢和CNB封端的金刚石(111)表面,具有单层覆盖物的氟[命名为CNBF封端(111)表面]具有阳性电子亲和力(豌豆)没有带间隙间的间隙状态和氮空位(NV)几乎完美的对准。因此,它们可能潜在地应用于基于NV的量子传感器。 CBN封端的金刚石(111)表面具有单层覆盖的氢[命名的CBNH封端(111)表面],其具有负的EA(嘴唇)和-3.51eV的吸附能量,可以在电子发射装置中采用。具体地,C-N-B-F-和C-B-N-H封端的金刚石(111)表面分别具有任何报告的金刚石表面的最大豌豆(4.48eV)和NEA(-4.00eV)。我们还提出了一种形式主义来构建在菱形表面上的多个偶极结构,以产生极大的EA。

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