Образец цитирования:
Г. П. Гуринович, А. Н. Севченко, К. Н. Соловьев, “Спектроскопия порфиринов”, УФН, 79:2 (1963), 173–234; Phys. Usp., 6:1 (1963), 67–105
A. S. Malyasova, F. A. Abieva, O. I. Koifman, “Oil Porphyrins: Research and Discovery History”, Russ J Gen Chem, 94:7 (2024), 1866
S. V. Valueva, L. N. Borovikova, E. L. Krasnopeeva, E. Yu. Melenevskaya, A. V. Yakimansky, “Spectral Characteristics of Selenium-Containing Hybrid Nanocomplexes Based on Fotoditazine and Cellulose Polymer Carrier”, J Appl Spectrosc, 2024
Olga Ryazanova, Igor Voloshin, Igor Dubey, Larysa Dubey, Victor Karachevtsev, “Binding of a Tricationic meso-Substituted Porphyrin to poly(A)⋅poly(U): an Experimental Study”, J Fluoresc, 2024
O. M. Kulikova, V. B. Sheinin, “New Photosensitizers Based on Glycosylated Derivatives of Cationic Porphyrins: Optical and Acid–Base Properties and Interaction with Three-Component Anionic Quantum Dots”, Russ. J. Phys. Chem., 98:14 (2024), 3315
T. V. Basova, D. V. Belykh, A. S. Vashurin, D. D. Klyamer, O. I. Koifman, P. O. Krasnov, T. N. Lomova, I. V. Loukhina, E. V. Motorina, G. L. Pakhomov, M. S. Polyakov, A. S. Semeikin, P. A. Stuzhin, A. S. Sukhikh, V. V. Travkin, “Tetrapyrrole Macroheterocyclic Compounds. Structure–Property Relationships”, J Struct Chem, 64:5 (2023), 766
Somayeh Hamd-Ghadareh, Abdollah Salimi, Asaad Vaziry, “Ultrasensitive Ratiometric Fluorescence Bioassay for Accurate Detection of Covid-19-Specific Nucleocapsid Protein in Clinical Serum Samples Using Modified Cleavable Mesoporous SiO2 Satellite-Enriched Carbon Dots”, ACS Biomater. Sci. Eng., 9:9 (2023), 5279
Haoyu Jing, Jie Rong, Masahiko Taniguchi, Jonathan S. Lindsey, “Phenylene-linked tetrapyrrole arrays containing free base and diverse metal chelate forms – Versatile synthetic architectures for catalysis and artificial photosynthesis”, Coordination Chemistry Reviews, 456 (2022), 214278
O.I. Koifman, E.D. Rychikhina, P.A. Yunin, A.I. Koptyaev, Yu.I. Sachkov, G.L. Pakhomov, “Vacuum-deposited petroporphyrins: Effect of regioisomerism on film morphology”, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 648 (2022), 129284
I. V. Loukhina, M. A. Gradova, I. S. Khudyaeva, А. V. Lobanov, D. V. Belykh, “Synthesis and Photocatalytic Properties of Magnesium Silicate Modified with Cationic Chlorin e6 Derivatives”, Russ J Gen Chem, 91:4 (2021), 697
Marina A. Elistratova, Margarita O. Koroleva, Irina B. Zakharova, Springer Proceedings in Physics, 255, International Youth Conference on Electronics, Telecommunications and Information Technologies, 2021, 247
Tatiana V. Petrenko, Larisa D. Stakhina, PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON PHYSICAL MESOMECHANICS. MATERIALS WITH MULTILEVEL HIERARCHICAL STRUCTURE AND INTELLIGENT MANUFACTURING TECHNOLOGY, 2310, PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON PHYSICAL MESOMECHANICS. MATERIALS WITH MULTILEVEL HIERARCHICAL STRUCTURE AND INTELLIGENT MANUFACTURING TECHNOLOGY, 2020, 020252
Sergey M. Kuzmin, Svetlana A. Chulovskaya, Vladimir I. Parfenyuk, Oskar I. Koifman, “Poly-5,10,15,20-tetrakis(4-hydroxyphenyl)porphyrin as a material for photovoltaic devices”, Mendeleev Communications, 30:6 (2020), 777
Olga Ryazanova, Igor Voloshin, Victor Zozulya, “Spectroscopic study on binding of TMPyP4+porphyrin to single-stranded poly(rA)”, Molecular Crystals and Liquid Crystals, 698:1 (2020), 26
И. В. Багров, А. В. Дадеко, В. М. Киселев, Т. Д. Муравьева, А. М. Стародубцев, “Сравнительные исследования фотофизических свойств димегина, фотодитазина и радахлорина”, Оптика и спектроскопия, 126:2 (2019), 162–169; I. V. Bagrov, A. V. Dadeko, V. M. Kiselev, T. D. Murav'eva, A. M. Starodubtsev, “Comparative study of the photophysical properties of dimegine, photoditazine, and radachlorin”, Optics and Spectroscopy, 125:6 (2018), 903–910
М. А. Елистратова, И. Б. Захарова, Г. В. Ли, Р. М. Дубровин, О. М. Сресели, “Влияние условий кристаллизации на спектральные характеристики тонких пленок тетрафенилпорфирина”, Физика и техника полупроводников, 53:1 (2019), 55–58; M. A. Elistratova, I. B. Zakharova, G. V. Li, R. M. Dubrovin, O. M. Sreseli, “The effect of crystallization conditions on the spectral characteristics of tetraphenylporphyrin thin films”, Semiconductors, 53:1 (2019), 51–54
O. A. Ryazanova, V. N. Zozulya, I. M. Voloshin, A. Yu. Glamazda, I. Ya. Dubey, L. V. Dubey, V. A. Karachevtsev, “Spectroscopic study of binding of a cationic Pheophorbide-a to an antiparallel quadruplex Tel22”, Biopolym. Cell, 35:2 (2019), 129
Ilya Obodovskiy, Radiation, 2019, 653
Н. М. Романов, М. А. Елистратова, E. Lahderanta, И. Б. Захарова, “Деградация фотолюминесценции тонких пленок ZnTPP и ZnTPP-C60 под действием гамма-облучения”, Физика и техника полупроводников, 52:8 (2018), 931–938; N. M. Romanov, M. A. Elistratova, E. Lahderanta, I. B. Zakharova, “Degradation of the photoluminescence of ZnTPP and ZnTPP-C60 thin films under gamma irradiation”, Semiconductors, 52:8 (2018), 1061–1067
Sudkanueng Singto, Supawan Tantayanon, Christopher A. Zoto, Robert E. Connors, “Syntheses and photophysical properties of diaminotetraphenylporphyrins and their corresponding polyimides”, Journal of Molecular Structure, 1154 (2018), 114
R. N. Mozhchil, A. M. Ionov, S. I. Bozhko, V. D. Rumyantseva, A. P. Menushenkov, “Electronic structure and thermal stability of rare earth metalloporphyrins based on ytterbium”, J. Synch. Investig., 11:3 (2017), 517