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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 95, 1998 - Issue 5
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Original Articles

Electron paramagnetic resonance study of atomic phosphorus encapsulated in [60]fullerene

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Pages 999-1004 | Published online: 04 Mar 2011

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Read on this site (3)

VictorB. Luzhkov. (2012) Free-energy molecular simulations of the inclusion complex of Ne with fullerene C60 in water. Molecular Simulation 38:4, pages 326-332.
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Seitaro Ito, Hidekazu Shimotani, Hidenori Takagi & Nita Dragoe. (2008) On the Synthesis Conditions of N and N2 Endohedral Fullerenes. Fullerenes, Nanotubes and Carbon Nanostructures 16:3, pages 206-213.
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JING LU, YUNSONG ZHOU, XINWEI ZHANG & XIANGENG ZHAO. (2001) Structural and electronic properties of endohedral phosphorus fullerene P@C60: an off-centre displacement of P inside the cage. Molecular Physics 99:14, pages 1199-1202.
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Articles from other publishers (65)

Sergey G. Semenov, Marina E. Bedrina, Tatiana A. Andreeva & Anatoly V. Titov. (2023) Spin‐tautomery of endohedral Y@ C 60 complex . International Journal of Quantum Chemistry 123:19.
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Arpita Poddar, C. N. Ramachandran & Pratim Kumar Chattaraj. (2022) Behavior of HF and (HF) 2 inside a fullerene cage: An in silico study using different density functionals . International Journal of Quantum Chemistry 123:7.
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M. Maejima, H. Shiromaru, K. Kikuchi, T. Kodama & T. Wakabayashi. (2022) N@C60 formation by laser-induced breakdown in nitrogen gas flow. Carbon Trends 9, pages 100212.
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Runnan Guan, Zuo-Chang Chen, Jing Huang, Han-Rui Tian, Jinpeng Xin, Si-Wei Ying, Muqing Chen, Qianyan Zhang, Qunxiang Li, Su-Yuan Xie, Lan-Sun Zheng & Shangfeng Yang. (2022) Self-driven carbon atom implantation into fullerene embedding metal–carbon cluster. Proceedings of the National Academy of Sciences 119:39.
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Diana E. Tahuilan-Anguiano & Vladimir A. Basiuk. (2022) Interaction of free-base and 3d metal(II) phthalocyanines with open-shell endohedral fullerenes species N@C60 and P@C60. Diamond and Related Materials 126, pages 109075.
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Tanzeeha Jafari, George Razvan Bacanu, Anna Shugai, Urmas Nagel, Mark Walkey, Gabriela Hoffman, Malcolm H. Levitt, Richard J. Whitby & Toomas Rõõm. (2022) Terahertz spectroscopy of the helium endofullerene He@C 60 . Physical Chemistry Chemical Physics 24:17, pages 9943-9952.
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Esam Ali, Taylor O’Brien, Andrew Dennis, Mohamed El-Amine Madjet, Steven T Manson & Himadri S Chakraborty. (2022) Electron vacancy-level dependent hybrid photoionization of the F − @ C60+ molecule: a novel effect . Journal of Physics B: Atomic, Molecular and Optical Physics 55:4, pages 045101.
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Ruma De, Esam Ali, Steven T Manson & Himadri S Chakraborty. (2021) Density functional study of the variants of inter-Coulombic decay resonances in the photoionization of Cl@C 60 . Physica Scripta 96:10, pages 104007.
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Thomas M. Fuchs & Rolf Schäfer. (2021) Influence of nuclear spins on electron spin coherence in isolated, p-doped tin clusters. Physical Chemistry Chemical Physics 23:19, pages 11334-11344.
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Sebastian AnilaCherumuttathu H. Suresh. (2021) Endo- and exohedral chloro-fulleride as η 5 ligands: a DFT study on the first-row transition metal complexes . Physical Chemistry Chemical Physics 23:5, pages 3646-3655.
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Dakota Shields, Ruma De, Esam Ali, Mohamed E. Madjet, Steven T. Manson & Himadri S. Chakraborty. (2020) A density functional theory based comparative study of hybrid photoemissions from Cl@C60, Br@C60 and I@C60. The European Physical Journal D 74:9.
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Dakota Shields, Ruma De, Mohamed E Madjet, Steven T Manson & Himadri S Chakraborty. (2020) Photoemission from hybrid states of Cl@C 60 before and after a stabilizing charge transfer . Journal of Physics B: Atomic, Molecular and Optical Physics 53:12, pages 125101.
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R. T. Harding, S. Zhou, J. Zhou, T. Lindvall, W. K. Myers, A. Ardavan, G. A. D. Briggs, K. Porfyrakis & E. A. Laird. (2017) Spin Resonance Clock Transition of the Endohedral Fullerene . Physical Review Letters 119:14.
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Wolfgang Harneit. 2017. Endohedral Fullerenes: Electron Transfer and Spin. Endohedral Fullerenes: Electron Transfer and Spin 297 324 .
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Chi‐Shian Chen, Ting‐Shen Kuo & Wen‐Yann Yeh. (2016) Encapsulation of Formaldehyde and Hydrogen Cyanide in an Open‐Cage Fullerene. Chemistry – A European Journal 22:26, pages 8773-8776.
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Yoshifumi Hashikawa, Michihisa Murata, Atsushi Wakamiya & Yasujiro Murata. (2016) Synthesis and Properties of Endohedral Aza[60]fullerenes: H 2 O@C 59 N and H 2 @C 59 N as Their Dimers and Monomers . Journal of the American Chemical Society 138:12, pages 4096-4104.
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Sang-Yun Lee, Matthias Niethammer & Jörg Wrachtrup. (2015) Vector magnetometry based on electronic spins . Physical Review B 92:11.
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Hisanori Shinohara & Nikos Tagmatarchis. 2015. Endohedral Metallofullerenes. Endohedral Metallofullerenes 103 132 .
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Grygoriy A. Dolgonos & Gilles H. Peslherbe. (2014) Encapsulation of diatomic molecules in fullerene C 60 : implications for their main properties . Phys. Chem. Chem. Phys. 16:47, pages 26294-26305.
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Malcolm H. Levitt. (2013) Spectroscopy of light-molecule endofullerenes. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 371:1998, pages 20120429.
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Alexey A. Popov, Shangfeng Yang & Lothar Dunsch. (2013) Endohedral Fullerenes. Chemical Reviews 113:8, pages 5989-6113.
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Yuming Yu, Lijun Shi, Dazhi Yang & Liangbing Gan. (2013) Molecular containers with a dynamic orifice: open-cage fullerenes capable of encapsulating either H2O or H 2 under mild conditions . Chem. Sci. 4:2, pages 814-818.
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Hui-Yan Zhao, Ke-Min Liu, Jing Wang, Hui-Yun Han & Ying Liu. (2013) The doorsill of fullerene. Chemical Physics Letters 555, pages 217-221.
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Helena Dodziuk. 2011. The Mathematics and Topology of Fullerenes. The Mathematics and Topology of Fullerenes 117 151 .
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Stefan Stoll, Andrew Ozarowski, R. David Britt & Alexander Angerhofer. (2010) Atomic hydrogen as high-precision field standard for high-field EPR. Journal of Magnetic Resonance 207:1, pages 158-163.
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Jianfeng Jia, Hai-Shun Wu, Xiao-Hong Xu, Xian-Ming Zhang & Haijun Jiao. (2010) Structure and Stability of Endohedral X@C 60 F, X@C 60 F 2 (X = N, H), and (H@C 60 ) 2 . The Journal of Physical Chemistry C 114:17, pages 7558-7562.
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Ilya Kuprov, Nicola Wagner-Rundell & P.J. Hore. (2007) Bloch-Redfield-Wangsness theory engine implementation using symbolic processing software. Journal of Magnetic Resonance 184:2, pages 196-206.
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Michael Scheloske, Boris Naydenov, Carola Meyer & Wolfgang Harneit. (2010) Synthesis and Functionalization of Fullerenes Encapsulating Atomic Phosphorus. Israel Journal of Chemistry 46:4, pages 407-412.
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Carlo Thilgen & François Diederich. (2006) Structural Aspects of Fullerene ChemistryA Journey through Fullerene Chirality. Chemical Reviews 106:12, pages 5049-5135.
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B. Naydenov, C. Spudat, W. Harneit, H.I. Süss, J. Hulliger, J. Nuss & M. Jansen. (2006) Ordered inclusion of endohedral fullerenes N@C60 and P@C60 in a crystalline matrix. Chemical Physics Letters 424:4-6, pages 327-332.
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Zdeněk Slanina, Peter Pulay & Shigeru Nagase. (2006) H 2 , Ne, and N 2 Energies of Encapsulation into C 60 Evaluated with the MPWB1K Functional . Journal of Chemical Theory and Computation 2:3, pages 782-785.
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Baopeng Cao, Tikva Peres, Chava Lifshitz, R. James Cross & Martin Saunders. (2006) Kinetic Energy Release of C 70 + and Its Endohedral Cation N@C 70 + : Activation Energy for N Extrusion . Chemistry – A European Journal 12:8, pages 2213-2221.
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