Linear acetylenic carbon (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Linear acetylenic carbon" in English language version.

refsWebsite
Global rank English rank
2nd place
2nd place
18th place
17th place
4th place
4th place
11th place
8th place
69th place
59th place
102nd place
76th place
1st place
1st place
low place
low place
274th place
309th place
149th place
178th place
3,142nd place
2,072nd place
low place
9,089th place
7,547th place
low place
low place
9,688th place
1,943rd place
1,253rd place
low place
low place
5,636th place
3,692nd place

academie-sciences.fr

comptes-rendus.academie-sciences.fr

arxiv.org

chemistryworld.com

doi.org

handle.net

hdl.handle.net

harvard.edu

ui.adsabs.harvard.edu

kurzweilai.net

newatlas.com

nih.gov

pubmed.ncbi.nlm.nih.gov

  • La Torre, A.; Botello-Mendez, A.; Baaziz, W.; Charlier, J. -C.; Banhart, F. (2015). "Strain-induced metal–semiconductor transition observed in atomic carbon chains". Nature Communications. 6: 6636. Bibcode:2015NatCo...6.6636L. doi:10.1038/ncomms7636. PMC 4389248. PMID 25818506.
  • Baughman, R. H. (2006). "CHEMISTRY: Dangerously Seeking Linear Carbon". Science. 312 (5776): 1009–1110. doi:10.1126/science.1125999. PMID 16709775. S2CID 93868586.
  • Itzhaki, L.; Altus, E.; Basch, H.; Hoz, S. (2005). "Harder than Diamond: Determining the Cross-Sectional Area and Young's Modulus of Molecular Rods". Angewandte Chemie. 117 (45): 7598. Bibcode:2005AngCh.117.7598I. doi:10.1002/ange.200502448. Itzhaki, L.; Altus, E.; Basch, H.; Hoz, S. (2005). "Harder than Diamond: Determining the Cross-Sectional Area and Young's Modulus of Molecular Rods". Angewandte Chemie International Edition. 44 (45): 7432–7435. doi:10.1002/anie.200502448. PMID 16240306.
  • Whittaker, A. G. (1978). "Carbon: A New View of Its High-Temperature Behavior". Science. 200 (4343): 763–4. Bibcode:1978Sci...200..763G. doi:10.1126/science.200.4343.763. PMID 17743239. S2CID 45075306. As cited by Kroto(2010).
  • Smith, P. P. K.; Buseck, P. R. (1982). "Carbyne Forms of Carbon: Do They Exist?". Science. 216 (4549): 984–6. Bibcode:1982Sci...216..984S. doi:10.1126/science.216.4549.984. PMID 17809068. S2CID 13290442. As cited by Kroto(2010).
  • Lagow, R. J.; Kampa, J. J.; Wei, H. -C.; Battle, S. L.; Genge, J. W.; Laude, D. A.; Harper, C. J.; Bau, R.; Stevens, R. C.; Haw, J. F.; Munson, E. (1995). "Synthesis of Linear Acetylenic Carbon: The "sp" Carbon Allotrope". Science. 267 (5196): 362–367. Bibcode:1995Sci...267..362L. doi:10.1126/science.267.5196.362. PMID 17837484. S2CID 12939062.
  • Shi, Lei; Rohringer, Philip; Suenaga, Kazu; Niimi, Yoshiko; Kotakoski, Jani; Meyer, Jannik C.; Peterlik, Herwig; Wanko, Marius; Cahangirov, Seymur; Rubio, Angel; Lapin, Zachary J.; Novotny, Lukas; Ayala, Paola; Pichler, Thomas (2016). "Confined linear carbon chains as a route to bulk carbyne". Nature Materials. 15 (6): 634–639. arXiv:1507.04896. Bibcode:2016NatMa..15..634S. doi:10.1038/nmat4617. PMID 27043782. S2CID 205413206.
  • Eisler, S.; Slepkov, A. D.; Elliott, E.; Luu, T.; McDonald, R.; Hegmann, F. A.; Tykwinski, R. R. (2005). "Polyynes as a Model for Carbyne: Synthesis, Physical Properties, and Nonlinear Optical Response". Journal of the American Chemical Society. 127 (8): 2666–2676. Bibcode:2005JAChS.127.2666E. doi:10.1021/ja044526l. PMID 15725024.
  • Liu, Mingjie; Artyukhov, Vasilii I.; Lee, Hoonkyung; Xu, Fangbo; Yakobson, Boris I. (2013). "Carbyne from first principles: Chain of C atoms, a nanorod or a nanorope". ACS Nano. 7 (11): 10075–82. arXiv:1308.2258. doi:10.1021/nn404177r. PMID 24093753. S2CID 23650957.
  • Sharma, Keshav; Costa, Nathalia (2020-08-31). "Anharmonicity and Universal Response of Linear Carbon Chain Mechanical Properties under Hydrostatic Pressure". Phys. Rev. Lett. 125 (10): 105051. Bibcode:2020PhRvL.125j5501S. doi:10.1103/PhysRevLett.125.105501. hdl:1721.1/132299. PMID 32955330. S2CID 221828448.
  • Sorokin, Pavel B.; Lee, Hoonkyung; Antipina, Lyubov Yu.; Singh, Abhishek K.; Yakobson, Boris I. (2011). "Calcium-decorated carbyne networks as hydrogen storage media". Nano Letters. 11 (7): 2660–2665. Bibcode:2011NanoL..11.2660S. doi:10.1021/nl200721v. PMID 21648444.
  • Tschannen, Cla Duri; Gordeev, Georgy; Reich, Stephanie; Shi, Lei; Pichler, Thomas; Frimmer, Martin; Novotny, Lukas; Heeg, Sebastian (2020). "Raman Scattering Cross Section of Confined Carbyne". Nano Letters. 20 (9): 6750–6755. Bibcode:2020NanoL..20.6750T. doi:10.1021/acs.nanolett.0c02632. hdl:20.500.11850/440809. PMID 32786933. S2CID 220055830.

ncbi.nlm.nih.gov

  • La Torre, A.; Botello-Mendez, A.; Baaziz, W.; Charlier, J. -C.; Banhart, F. (2015). "Strain-induced metal–semiconductor transition observed in atomic carbon chains". Nature Communications. 6: 6636. Bibcode:2015NatCo...6.6636L. doi:10.1038/ncomms7636. PMC 4389248. PMID 25818506.

sci-news.com

sciencedirect.com

semanticscholar.org

api.semanticscholar.org

springer.com

link.springer.com

sxicc.ac.cn

xxtcl.sxicc.ac.cn

taylorfrancis.com

technologyreview.com

web.archive.org