Silicen (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Silicen" in German language version.

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  • Kyozaburo Takeda, Kenji Shiraishi: Theoretical possibility of stage corrugation in Si and Ge analogs of graphite. In: Physical Review B. Band 50, Nr. 20, 15. November 1994, S. 14916–14922, doi:10.1103/PhysRevB.50.14916.
  • Gian G. Guzmán-Verri, L. C. Lew Yan Voon: Electronic structure of silicon-based nanostructures. In: Physical Review B. Band 76, Nr. 7, 30. August 2007, S. 075131, doi:10.1103/PhysRevB.76.075131.
  • S. Cahangirov, M. Topsakal, E. Aktürk, H. Şahin, S. Ciraci: Two- and One-Dimensional Honeycomb Structures of Silicon and Germanium. In: Physical Review Letters. Band 102, Nr. 23, 12. Juni 2009, S. 236804, doi:10.1103/PhysRevLett.102.236804.
  • J. C. Garcia, D. B. de Lima, L. V. C. Assali, J. F. Justo: Group IV Graphene- and Graphane-Like Nanosheets. In: J. Phys. Chem. C. 115. Jahrgang, 2011, S. 13242, doi:10.1021/jp203657w.
  • Bernard Aufray, Abdelkader Kara, Sébastien Vizzini, Hamid Oughaddou, Christel Léandri, Benedicte Ealet, Guy Le Lay: Graphene-like silicon nanoribbons on Ag(110): A possible formation of silicene. In: Applied Physics Letters. Band 96, Nr. 18, 3. Mai 2010, S. 183102, doi:10.1063/1.3419932.
  • Patrick Vogt, Paola De Padova, Claudio Quaresima, Jose Avila, Emmanouil Frantzeskakis, Maria Carmen Asensio, Andrea Resta, Bénédicte Ealet, Guy Le Lay: Silicene: Compelling Experimental Evidence for Graphenelike Two-Dimensional Silicon. In: Physical Review Letters. Band 108, Nr. 15, 12. April 2012, S. 155501, doi:10.1103/PhysRevLett.108.155501.
  • S. Colonna, G. Serrano, P. Gori, A. Cricenti, F. Ronci: Systematic STM and LEED investigation of the Si/Ag(110) surface. In: Journal of Physics: Condensed Matter. Band 25, Nr. 31, 7. August 2013, S. 315301, doi:10.1088/0953-8984/25/31/315301.
  • L. i. Tao, Eugenio Cinquanta, Daniele Chiappe, Carlo Grazianetti, Marco Fanciulli, Madan Dubey, Alessandro Molle, Deji Akinwande: Silicene field-effect transistors operating at room temperature. In: Nature Nanotechnology. 2015, doi:10.1038/nnano.2014.325.
  • Chun-Liang Lin, Ryuichi Arafune, Kazuaki Kawahara, Noriyuki Tsukahara, Emi Minamitani, Yousoo Kim, Noriaki Takagi, Maki Kawai: Structure of Silicene Grown on Ag(111). In: Applied Physics Express. Band 5, Nr. 4, 1. April 2012, S. 045802, doi:10.1143/APEX.5.045802.
  • Baojie Feng, Zijing Ding, Sheng Meng, Yugui Yao, Xiaoyue He, Peng Cheng, Lan Chen, Kehui Wu: Evidence of Silicene in Honeycomb Structures of Silicon on Ag(111). In: Nano Letters. Band 12, Nr. 7, 11. Juli 2012, S. 3507–3511, doi:10.1021/nl301047g.
  • Zhi-Xin Guo, Shinnosuke Furuya, Jun-ichi Iwata, Atsushi Oshiyama: Absence of Dirac Electrons in Silicene on Ag(111) Surfaces. In: Journal of the Physical Society of Japan. Band 82, Nr. 6, 29. Mai 2013, S. 063714, doi:10.7566/JPSJ.82.063714.
  • R. Arafune, C.-L. Lin, R. Nagao, M. Kawai, N. Takagi: Comment on “Evidence for Dirac Fermions in a Honeycomb Lattice Based on Silicon”. In: Physical Review Letters. Band 110, Nr. 22, Mai 2013, doi:10.1103/PhysRevLett.110.229701.
  • Chun-Liang Lin, Ryuichi Arafune, Kazuaki Kawahara, Mao Kanno, Noriyuki Tsukahara, Emi Minamitani, Yousoo Kim, Maki Kawai, Noriaki Takagi: Substrate-Induced Symmetry Breaking in Silicene. In: Physical Review Letters. Band 110, Nr. 7, 11. Februar 2013, S. 076801, doi:10.1103/PhysRevLett.110.076801.
  • Paola Gori, Olivia Pulci, Fabio Ronci, Stefano Colonna, Friedhelm Bechstedt: Origin of Dirac-cone-like features in silicon structures on Ag(111) and Ag(110). In: Journal of Applied Physics. Band 114, Nr. 11, 21. September 2013, S. 113710, doi:10.1063/1.4821339.
  • Lan Chen, Cheng-Cheng Liu, Baojie Feng, Xiaoyue He, Peng Cheng, Zijing Ding, Sheng Meng, Yugui Yao, Kehui Wu: Evidence for Dirac Fermions in a Honeycomb Lattice Based on Silicon. In: Physical Review Letters. Band 109, Nr. 5, 3. August 2012, S. 056804, doi:10.1103/PhysRevLett.109.056804.
  • Emilio Scalise, Michel Houssa, Geoffrey Pourtois, B. van den Broek, Valery Afanas’ev, André Stesmans: Vibrational properties of silicene and germanene. In: Nano Research. Band 6, Nr. 1, 2013, S. 19–28, doi:10.1007/s12274-012-0277-3.
  • Deepthi Jose, Ayan Datta: Structures and Chemical Properties of Silicene: Unlike Graphene. In: Accounts of Chemical Research. Band 47, Nr. 2, 18. Februar 2014, S. 593–602, doi:10.1021/ar400180e.
  • Paola De Padova, Christel Leandri, Sebastien Vizzini, Claudio Quaresima, Paolo Perfetti, Bruno Olivieri, Hamid Oughaddou, Bernard Aufray, Guy Le Lay: Burning Match Oxidation Process of Silicon Nanowires Screened at the Atomic Scale. In: Nano Letters. Band 8, Nr. 8, 2008, S. 2299–2304, doi:10.1021/nl800994s.
  • Antoine Fleurence, Rainer Friedlein, Taisuke Ozaki, Hiroyuki Kawai, Ying Wang, Yukiko Yamada-Takamura: Experimental Evidence for Epitaxial Silicene on Diboride Thin Films. In: Physical Review Letters. Band 108, Nr. 24, 11. Juni 2012, S. 245501, doi:10.1103/PhysRevLett.108.245501.
  • Lei Meng u. a.: Buckled Silicene Formation on Ir(111). In: Nano Letters. Band 13, Nr. 2, 13. Februar 2013, S. 685–690, doi:10.1021/nl304347w.
  • Tetsuya Morishita, Michelle J. S. Spencer, Shuhei Kawamoto, Ian K. Snook: A New Surface and Structure for Silicene: Polygonal Silicene Formation on the Al(111) Surface. In: The Journal of Physical Chemistry C. Band 117, Nr. 42, 24. Oktober 2013, S. 22142–22148, doi:10.1021/jp4080898.
  • Yusuke Sugiyama, Hirotaka Okamoto, Takuya Mitsuoka, Takeshi Morikawa, Koji Nakanishi, Toshiaki Ohta, Hideyuki Nakano: Synthesis and Optical Properties of Monolayer Organosilicon Nanosheets. In: Journal of the American Chemical Society. Band 132, Nr. 17, 5. Mai 2010, S. 5946–5947, doi:10.1021/ja100919d.