-
Nozomu Suzuki, Yutaka Itabashi, “Possible Roles of Amphiphilic Molecules in the Origin of Biological Homochirality”, Symmetry, 11:8 (2019), 966
-
D. B. Gelashvili, E. V. Chuprunov, N. V. Somov, M. O. Marychev, A. A. Nizhegorodtsev, I. N. Markelov, V. N. Yakimov, “Group-Theoretical Analysis of Symmetry Transformations on the Example of Some Aquatic Organisms”, Biol Bull Rev, 9:3 (2019), 203
-
S. V. Stovbun, A. M. Zanin, A. A. Skoblin, M. A. Tregubova, V. A. Tverdislov, O. P. Taran, V. N. Parmon, “Formation of Chiral and Supercoiled Structures in Photoinduced Formose Reaction in the de novo Model”, Russ. J. Phys. Chem. B, 13:3 (2019), 486
-
K. V. Shaitan, “Energy Landscapes of Macromolecules with Unique 3D Structures”, BIOPHYSICS, 63:4 (2018), 485
-
S. V. Stovbun, A. A. Skoblin, A. M. Zanin, V. A. Tverdislov, O. P. Taran, V. N. Parmon, “Formation of Chiral Structures in UV-Initiated Formose Reaction”, Dokl Phys Chem, 479:1-2 (2018), 57
-
S. V. Stovbun, A. A. Skoblin, A. M. Zanin, V. A. Tverdislov, O. P. Taran, V. N. Parmon, “Formation of Chiral Structures in Photoinitiated Formose Reaction”, High Energy Chem, 52:2 (2018), 108
-
G. A. Gusev, Z. G. Guseva, “Type 1a Supernova Explosion and the Origin of Sugar Chiral Asymmetry in Biological Systems”, Bull. Lebedev Phys. Inst., 45:5 (2018), 145
-
S. V. Stovbun, A. M. Zanin, M. G. Mikhaleva, A. A. Skoblin, V. A. Tverdislov, O. P. Taran, V. N. Parmon, “Spontaneous Structure Formation in the Products of UV-Initiated Formose Reaction in De-Novo Model”, High Energy Chem, 52:5 (2018), 369
-
V. A. Tverdislov, E. V. Malyshko, S. A. Il'chenko, O. A. Zhulyabina, L. V. Yakovenko, “A periodic system of chiral structures in molecular biology”, BIOPHYSICS, 62:3 (2017), 331
-
Svetlana G. Kozlova, Svyatoslav P. Gabuda, “Thermal properties of Zn2(C8H4O4)2•C6H12N2 metal-organic framework compound and mirror symmetry violation of dabco molecules”, Sci Rep, 7:1 (2017)
-
McCullen Sandora, “Anthropics of aluminum-26 decay and biological homochirality”, J. Cosmol. Astropart. Phys., 2017:11 (2017), 025
-
Michael A. Famiano, Richard N. Boyd, Handbook of Supernovae, 2017, 2383
-
Ya. A. Litvin, A. A. Skoblin, S. V. Stovbun, “Physicochemical modeling of the main stages of formation of a chirally pure prebiotic world”, Russ. J. Phys. Chem. B, 11:1 (2017), 146
-
D. V. Zlenko, M. A. Tregubova, S. V. Stovbun, “Molecular mechanism of the spontaneous segregation of enantiomers in liquid nanoblobs”, Russ. J. Phys. Chem. B, 11:2 (2017), 343
-
E. S. Loginova, V. M. Nikol'skii, “Biodegradable chelating agents. Effect of optical isomerism on the physicochemical characteristics”, Russ. J. Phys. Chem. B, 11:4 (2017), 708
-
С. Г. Козлова, “Поведение теплоемкости при фазовых переходах второго рода в металл-органическом сорбенте $\mathrm{[Zn_2(C_8H_4O_4)_2\cdot C_6H_{12}N_2]}$”, Письма в ЖЭТФ, 104:4 (2016), 254–257
; S. G. Kozlova, “Behavior of the heat capacity at second-order phase transitions in the $\mathrm{[Zn_2(C_8H_4O_4)_2\cdot C_6H_{12}N_2]}$ metal-organic framework compound”, JETP Letters, 104:4 (2016), 253–256
-
Ya. A. Litvin, A. N. Shchegolikhin, A. A. Skoblin, S. V. Stovbun, “Elementary supramolecular strings in solutions of chiral trifluoroacetylated amino alcohols”, Russ. J. Phys. Chem. B, 10:5 (2016), 725
-
Hiroyasu Katsuno, Makio Uwaha, “Mechanism of chirality conversion by periodic change of temperature: Role of chiral clusters”, Phys. Rev. E, 93:1 (2016)
-
George G. Managadze, Michael H. Engel, Stephanie Getty, Peter Wurz, William B. Brinckerhoff, Anatoly G. Shokolov, Gennady V. Sholin, Sergey A. Terent'ev, Alexander E. Chumikov, Alexander S. Skalkin, Vladimir D. Blank, Vyacheslav M. Prokhorov, Nina G. Managadze, Konstantin A. Luchnikov, “Excess of l-alanine in amino acids synthesized in a plasma torch generated by a hypervelocity meteorite impact reproduced in the laboratory”, Planetary and Space Science, 131 (2016), 70
-
Michiya Fujiki, Keisuke Yoshida, Nozomu Suzuki, Nor Azura Abdul Rahim, Jalilah Abd Jalil, “Tempo-spatial chirogenesis. Limonene-induced mirror symmetry breaking of Si Si bond polymers during aggregation in chiral fluidic media”, Journal of Photochemistry and Photobiology A: Chemistry, 331 (2016), 120