プルンバン (Japanese Wikipedia)

Analysis of information sources in references of the Wikipedia article "プルンバン" in Japanese language version.

refsWebsite
Global rank Japanese rank
2nd place
6th place
18th place
107th place
4th place
24th place
102nd place
78th place
621st place
4,635th place
low place
low place
1st place
1st place
low place
low place

doi.org (Global: 2nd place; Japanese: 6th place)

  • Hein, Thomas A.; Thiel, Walter; Lee, Timothy J. (1993). “Ab initio study of the stability and vibrational spectra of plumbane, methylplumbane, and homologous compounds”. The Journal of Physical Chemistry 97 (17): 4381–4385. doi:10.1021/j100119a021. hdl:11858/00-001M-0000-0028-1862-2. 
  • Paneth, Fritz; Nörring, Otto (1920). “Über Bleiwasserstoff”. Berichte der Deutschen Chemischen Gesellschaft (A and B Series) 53 (9): 1693–1710. doi:10.1002/cber.19200530915. https://zenodo.org/record/1426681. 
  • Desclaux, J. P.; Pyykko, P. (1974). “Relativistic and non-relativistic Hartree-Fock one-centre expansion calculations for the series CH4 to PbH4 within the spherical approximation”. Chemical Physics Letters 29 (4): 534–539. Bibcode1974CPL....29..534D. doi:10.1016/0009-2614(74)85085-2. 
  • Pyykkö, P.; Desclaux, J. P. (1977). “Dirac–Fock one-centre calculations show (114)H4 to resemble PbH4”. Nature 266 (5600): 336–337. Bibcode1977Natur.266..336P. doi:10.1038/266336a0. 
  • Visser, O.; Visscher, L.; Aerts, P. J. C.; Nieuwpoort, W. C. (1992). “Relativistic all-electron molecular Hartree-Fock-Dirac-(Breit) calculations on CH4, SiH4, GeH4, SnH4, PbH4”. Theoretica Chimica Acta 81 (6): 405–416. doi:10.1007/BF01134864. 
  • Malli, Gulzari L.; Siegert, Martin; Turner, David P. (2004). “Relativistic and electron correlation effects for molecules of heavy elements: Ab initio fully relativistic coupled-cluster calculations for PbH4”. International Journal of Quantum Chemistry 99 (6): 940–949. doi:10.1002/qua.20142. 
  • Wang, Xuefeng; Andrews, Lester (2003). “Infrared Spectra of Group 14 Hydrides in Solid Hydrogen: Experimental Observation of PbH4, Pb2H2, and Pb2H4”. Journal of the American Chemical Society 125 (21): 6581–6587. doi:10.1021/ja029862l. PMID 12785799. 

handle.net (Global: 102nd place; Japanese: 78th place)

hdl.handle.net

  • Hein, Thomas A.; Thiel, Walter; Lee, Timothy J. (1993). “Ab initio study of the stability and vibrational spectra of plumbane, methylplumbane, and homologous compounds”. The Journal of Physical Chemistry 97 (17): 4381–4385. doi:10.1021/j100119a021. hdl:11858/00-001M-0000-0028-1862-2. 

harvard.edu (Global: 18th place; Japanese: 107th place)

ui.adsabs.harvard.edu

hbcpnetbase.com (Global: low place; Japanese: low place)

nih.gov (Global: 4th place; Japanese: 24th place)

pubmed.ncbi.nlm.nih.gov

  • Zou, Y; Jin, FX; Chen, ZJ; Qiu, DR; Yang, PY (2005). “Non-nascent hydrogen mechanism of plumbane generation”. Guang Pu Xue Yu Guang Pu Fen Xi = Guang Pu 25 (10): 1720–3. PMID 16395924. 
  • Wang, Xuefeng; Andrews, Lester (2003). “Infrared Spectra of Group 14 Hydrides in Solid Hydrogen: Experimental Observation of PbH4, Pb2H2, and Pb2H4”. Journal of the American Chemical Society 125 (21): 6581–6587. doi:10.1021/ja029862l. PMID 12785799. 

troitsk.ru (Global: low place; Japanese: low place)

isan.troitsk.ru

web.archive.org (Global: 1st place; Japanese: 1st place)

zenodo.org (Global: 621st place; Japanese: 4,635th place)