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Original Articles

Ab initio modelling of band states in doped diamond

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Pages 1163-1174 | Published online: 15 Nov 2010

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Robert J. Rees & Michelle J.S. Spencer. (2016) The science and life of Ian K. Snook. Molecular Simulation 42:6-7, pages 448-457.
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Cui Xia Yan, Ying Dai, Meng Guo, Lin Yu, Dong Hong Liu, Bai Biao Huang, Rui Qin Zhang, Wen Jun Zhang & Igor Bello. (2008) Investigation of low-resistivity from hydrogenated lightly B-doped diamond by ion implantation. Science and Technology of Advanced Materials 9:2.
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A. S. Barnard, S. P. Russo & I. K. Snook. (2003) Ab initio modelling of boron and nitrogen in diamond nanowires. Philosophical Magazine 83:19, pages 2301-2309.
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A. S. Barnard, S. P. Russo & I. K. Snook. (2003) Ab initio modelling of dopants in diamond nanowires: Ii. Philosophical Magazine 83:19, pages 2311-2321.
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Articles from other publishers (22)

D Propst, J Kotakoski & E H Åhlgren. (2023) Impurity atom configurations in diamond and their visibility via scanning transmission electron microscopy imaging. Electronic Structure 5:3, pages 033004.
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D. Y. Liu, L. C. Hao, Y. Teng, F. Qin, Y. Shen, K. Tang, J. D. Ye, S. M. Zhu, R. Zhang, Y. D. Zheng & S. L. Gu. (2021) Nitrogen modulation of boron doping behavior for accessible n-type diamond. APL Materials 9:8.
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V. D. Blank, K. N. Boldyrev, V. N. Denisov, V. V. Denisov, A. S. Galkin, M. S. Kuznetsov, B. N. Mavrin, S. A. Nosukhin, D. D. Prikhodko, A. A. Sukhanov, S. A. Tarelkin & S. A. Terentiev. (2020) Electronic band structure of phosphorus-doped single crystal diamond: Dynamic Jahn-Teller distortion of the tetrahedral donor ground state. Physical Review B 102:11.
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Bartłomiej Dec, Michał Sobaszek, Andrés Jaramillo-Botero, William Andrew GoddardIIIIII & Robert Bogdanowicz. (2019) Ligand-Modified Boron-Doped Diamond Surface: DFT Insights into the Electronic Properties of Biofunctionalization. Materials 12:18, pages 2910.
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Alex Croot, M Zamir Othman, Sergio Conejeros, Neil A Fox & Neil L Allan. (2018) A theoretical study of substitutional boron–nitrogen clusters in diamond. Journal of Physics: Condensed Matter 30:42, pages 425501.
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Daniel W Drumm, Akin Budi, Manolo C Per, Salvy P Russo & Lloyd C L Hollenberg. (2013) Ab initio calculation of valley splitting in monolayer δ-doped phosphorus in silicon. Nanoscale Research Letters 8:1.
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Amanda S Barnard. (2013) Modeling polydispersive ensembles of diamond nanoparticles. Nanotechnology 24:8, pages 085703.
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B. T. Webber, M. C. Per, D. W. Drumm, L. C. L. Hollenberg & S. P. Russo. (2012) Ab initio thermodynamics calculation of the relative concentration of NV and NV defects in diamond . Physical Review B 85:1.
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JIANGUANG WANG, LI MA & JIJUN ZHAO. (2012) FIRST-PRINCIPLES STUDY OF NANODIAMOND DOPED WITH B AND N. International Journal of Modern Physics B 24:31, pages 6099-6106.
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D. W. Drumm, M. C. Per, S. P. Russo & L. C. L. Hollenberg. (2010) Thermodynamic stability of neutral Xe defects in diamond. Physical Review B 82:5.
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Etienne Bustarret. 2008. Physics and Applications of CVD Diamond. Physics and Applications of CVD Diamond 329 350 .
E.B. Lombardi & Alison Mainwood. (2008) A first principles study of lithium, sodium and aluminum in diamond. Diamond and Related Materials 17:7-10, pages 1349-1352.
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E. Bustarret. (2008) Superconducting diamond: an introduction. physica status solidi (a) 205:5, pages 997-1008.
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E Bustarret, P Achatz, B Sacépé, C Chapelier, C Marcenat, L Ortéga & T Klein. (2007) Metal-to-insulator transition and superconductivity in boron-doped diamond. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 366:1863, pages 267-279.
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A. Deneuville, C. Baron, S. Ghodbane & C. Agnès. (2007) Highly and heavily boron doped diamond films. Diamond and Related Materials 16:4-7, pages 915-920.
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Ying Dai, Run Long, Baibiao Huang & Zhenkui Zhang. (2007) Effect of boron on the superconducting transition of heavily doped diamond. Diamond and Related Materials 16:2, pages 353-358.
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A. S. Barnard & M. Sternberg. (2006) Substitutional Boron in Nanodiamond, Bucky-Diamond, and Nanocrystalline Diamond Grain Boundaries. The Journal of Physical Chemistry B 110:39, pages 19307-19314.
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K.-W. Lee & W. E. Pickett. (2006) Boron spectral density and disorder broadening in B-doped diamond. Physical Review B 73:7.
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Dan Wu, Y. C. Ma, Z. L. Wang, Q. Luo, C. Z. Gu, N. L. Wang, C. Y. Li, X. Y. Lu & Z. S. Jin. (2006) Optical properties of boron-doped diamond. Physical Review B 73:1.
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A. S. Barnard & M. Sternberg. (2005) Substitutional Nitrogen in Nanodiamond and Bucky-Diamond Particles. The Journal of Physical Chemistry B 109:36, pages 17107-17112.
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A. S. Barnard, S. P. Russo & I. K. Snook. (2005) First-Principles Modeling of Dopants in C 29 and C 29 H 24 Nanodiamonds . The Journal of Physical Chemistry B 109:24, pages 11991-11995.
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H. J. Xiang, Zhenyu Li, Jinlong Yang, J. G. Hou & Qingshi Zhu. (2004) Electron-phonon coupling in a boron-doped diamond superconductor. Physical Review B 70:21.
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