References
203
Tarasov YI, Kochikov IV, Vogt N, Stepanova AV, Kovtun DM, Ivanov AA, Rykov AN, Deyanov RZ,
Novosadov BK, Vogt J (2008) Electron diffraction and quantum chemical study of the structure
and internal rotation in nitroethane. J Mol Struct 872:150–165
Thomson GP, Reid A (1927) Diffraction of cathode rays by a tin film. Nature 119:890
Tremmel J, Hargittai I (1988) Gas Electron Diffraction Experiment. In: Hargittai I, Hargittai M (eds)
Stereochemical applications of gas-phase electron diffraction. Part A. The electron diffraction
experiment. VCH Publishers Inc, New York, pp 191–225
Tremmel J, Bohatka S, Berecz I, Hargittai I (1978) Attachment of a quadrupole mass spectrometer to
the EG-100A electronograph. Prib Thekh Eksp/Instrum Exp Tech (Engl Transl) 4:251–252/1118–
1120
Vishnevskiy YV (2007) The initial processing of the gas electron diffraction data: an improved
method for obtaining intensity curves from diffraction patterns. J Mol Struct 833:30–41
Vishnevskiy YV (2019) UNEX program package. http://unexprog.org
Vogt N (2001) Equilibrium bond lengths, force constants and vibrational frequencies of MnF 2 ,
CoF 2 , NiF 2 , and ZnF 2 from least-squares analysis of gas-phase electron diffraction data. J Mol
Struct 570:189–195
Vogt N, Vogt J (2019) Structure data of free polyatomic molecules. Springer, Switzerland, p 926
Vogt N, Girichev GV, Vogt J, Girichev AG (1995) Equilibrium structure of beryllium difluoride
from least-squares analysis of gas-phase electron diffraction data. J Mol Struct 352–353:175–179
Vogt J, Vogt N, Kramer R (2003) Visualization and substructure retrieval tools in the MOGADOC
database. J Chem Inform Comput Sci 43:357–361
Vogt N, Khaikin LS, Grikina OE, Rykov AN, Vogt J (2008) Study of thymine molecule: equilibrium
structure from joint analysis of gas-phase electron diffraction and microwave data and assignment
of vibrational spectra using results of ab initio calculations. J Phys Chem A 112:7662–7670
Vogt N, Khaikin LS, Grikina OE, Karasev NM, Vogt J, Vilkov LV (2009) Flexibility of the saturated
five-membered ring in 2,5-pyrrolidinedione (succinimide): electron diffraction and quantumchemical studies with use of vibrational spectroscopy data. J Phys Chem A 113:931–937
Vogt N, Rudert R, Rykov AN, Karasev NM, Shishkov IF, Vogt J (2011a) Use of imaging plates
(IPs) in the gas-phase electron diffraction (GED) experiments on the EG-100M apparatus. The
tetrachloromethane molecule as a test object. Struct Chem 22(2):287–291
Vogt N, Vogt J, Demaison J (2011b) Accuracy of the rotational constants. J Mol Struct 988:119–127
Vogt N, Khaikin LS, Grikina OE, Rykov AN (2013) A benchmark study of molecular structure by
experimental and theoretical methods: equilibrium structure of uracil from gas-phase electron
diffraction data and coupled-cluster calculations. J Mol Struct 1050:114–121
Vogt N, Demaison J, Ksenafontov DN, Rudolph HD (2014) A benchmark study of molecular structure by experimental and theoretical methods: equilibrium structure of thymine from microwave
rotational constants and coupled-cluster computations. J Mol Struct 1076:483–489
Vogt N, Altova EP, Ksenafontov DN, Rykov AN (2015) Benchmark study of molecules with largeamplitude ring-twisting motion: accurate equilibrium structure of succinic anhydride from gas
electron diffraction data and coupled-cluster computations. Struct Chem 26:1481–1488
Vogt N, Marochkin II, Rykov AN (2018) Experiment and theory at the convergence limit: accurate equilibrium structure of picolinic acid by gas-phase electron diffraction and coupled-cluster
computations. Phys Chem Chem Phys 20:9787–9795
Vogt N, Khaikin LS, Rykov AN, Grikina OE, Batiukov AA, Vogt J, Kochikov IV, Shishkov IF
(2019) The equilibrium molecular structure of 2-cyanopyridine from combined analysis of gasphase electron diffraction and microwave data and results of ab initio calculations. Struct Chem
30:1699–1706
Wilson EB, Decius JC, Cross PC (1955) Molecular vibrations. The theory of infrared and raman
vibrational spectra. McGrow-Hill, New York, p 388
Yagola AG, Kochikov IV, Kuramshina GM, Pentin YA (1999) Inverse problems of vibrational
spectroscopy. VSP, Utrecht, The Netherlands, p 297
Précédent

- 218/291

Suivant