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dc.contributor.authorPuga, Pavlo P.-
dc.contributor.authorПуга, Павло Павлович-
dc.contributor.authorDanyliuk, Pavlo S.-
dc.contributor.authorRizak, Galina V.-
dc.contributor.authorРізак, Галина Вікторівна-
dc.contributor.authorGomonai, Aleksandr I.-
dc.contributor.authorRizak, Ivan M.-
dc.contributor.authorRizak, Vasyly M.-
dc.contributor.authorРізак, Василь Михайлович-
dc.contributor.authorPuga, Galina D.-
dc.contributor.authorПуга, Галина Дмитрівна-
dc.contributor.authorKvetkova, Lenka-
dc.contributor.authorBirov, Nikolay N.-
dc.contributor.authorChychura, Ivan I.-
dc.contributor.authorЧичура, Іван Іванович-
dc.contributor.authorZhiharev, Vladimir N.-
dc.contributor.authorЖихарєв, Володимир Миколайович-
dc.date.accessioned2023-03-16T11:15:49Z-
dc.date.available2023-03-16T11:15:49Z-
dc.date.issued2018-
dc.identifier.citationPuga, P. Raman scattering in glassy Li2B4O7 / Pavlo P. Puga, Pavlo S. Danyliuk, Vladimir N. Zhiharev // Journal of Chemistry and Technologies, 2018, 26(2), pp. 31–38uk
dc.identifier.issn2306-871X-
dc.identifier.urihttps://dspace.uzhnu.edu.ua/jspui/handle/lib/49077-
dc.description.abstractLithium tetraborate is a promising material to be used in the production of solid electrolytes and solid-state batteries. A powerful tool for investigating its structure in the B2O3–Li2O system is Raman spectroscopy. The Raman spectra were investigated using the XploRA PLUS (HORIBA Jobin Yvon) Raman spectrometer at the temperature of T = 300 K within the 70–2000 cm–1 range. The excitation wavelength was 785 nm, the spectral resolution was no worse than 1 cm–1. As a result of the study, we have determined the nature of vibrational modes. We detected a fine structure in the 70–400 cm–1 range, which we found to correspond to normal vibration of the lithium-oxygen structural complexes in the structure of [LiO6] frames, and also vibrations and librations of [LiO6] frame and the BO3 and BO4 groups in the structure of [B4O7] 2– cluster as a whole. In the 400–800 cm–1 range the superposition of vibrations of [LiO4] clusters and [BO4] tetrahedrons takes place, whereas their normal vibrations are detected in the 800–1354 cm–1 range. In the 1300–2000 cm–1 range we observed the manifestation of two-phonon states, the normal vibrations of borate rings, and the symmetric stretching of the BO3 flat triangles, and detected two peaks that have not been observed previously. The obtained results show that the Raman spectra of glassy Li2B4O7 generally display a single-mode behavior and are caused by a combination of vibrations of different types which are interconnected via the frame structure of the glass consisting of complex boronoxygen and lithium-oxygen structural complexes.uk
dc.description.abstractДосліджено спектри комбінаційного розсіювання світла у склоподібному тетрабораті літію. Встановлено, що більшість коливальних мод скла Li2B4O7 у межах усередненого порядку зумовлена змішаними модами складних бор-оксигенових та літій-оксигенових структурних комплексів.uk
dc.language.isoukuk
dc.publisherOles Honchar Dnipro National Universityuk
dc.subjectithium tetraborateuk
dc.subjectmodeuk
dc.subjectstructural complexeuk
dc.subjecttetrahedral groupsuk
dc.subjecttrigonal groupsuk
dc.subjectтетраборат літіюuk
dc.subjectмодаuk
dc.subjectструктурні групиuk
dc.subjectтетраедричні групиuk
dc.subjectтригональні групиuk
dc.titleRaman scattering in glassy Li2B4O7uk
dc.title.alternativeКомбінаційне розсіювання світла у склоподібному Li2B4O7uk
dc.typeTextuk
dc.pubTypeСтаттяuk
Appears in Collections:Наукові публікації кафедри органічної хімії
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