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Structural insights into thermal behavior and vibrational properties of Ni5P4. / Верещагин, Олег Сергеевич; Панькин, Дмитрий Васильевич; Горелова, Людмила Александровна; Сагатов, Нурсултан; Хмельницкая, Майя Олеговна; Власенко, Наталия Сергеевна; Гаврюшкин, Павел; Бритвин, Сергей Николаевич.

In: Materials Chemistry and Physics, Vol. 348, 131642, 15.01.2026.

Research output: Contribution to journalArticlepeer-review

Harvard

Верещагин, ОС, Панькин, ДВ, Горелова, ЛА, Сагатов, Н, Хмельницкая, МО, Власенко, НС, Гаврюшкин, П & Бритвин, СН 2026, 'Structural insights into thermal behavior and vibrational properties of Ni5P4', Materials Chemistry and Physics, vol. 348, 131642. https://doi.org/10.1016/j.matchemphys.2025.131642

APA

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Author

Верещагин, Олег Сергеевич ; Панькин, Дмитрий Васильевич ; Горелова, Людмила Александровна ; Сагатов, Нурсултан ; Хмельницкая, Майя Олеговна ; Власенко, Наталия Сергеевна ; Гаврюшкин, Павел ; Бритвин, Сергей Николаевич. / Structural insights into thermal behavior and vibrational properties of Ni5P4. In: Materials Chemistry and Physics. 2026 ; Vol. 348.

BibTeX

@article{bb8ce582daab4554aa0991cce40ef11a,
title = "Structural insights into thermal behavior and vibrational properties of Ni5P4",
abstract = "First-row transition metal (Me) phosphides are the cost-effective materials in sustainable chemistry, including applications in hydrogen evolution reaction and the development of alkaline-metal-ion batteries. However, thermal behavior and vibrational properties of transition metal phosphides have been poorly studied. We report data on Ni5P4, one of the technologically demanded nickel phosphides, which was investigated by means of scanning electron microscopy, electron microprobe analyses, electron backscatter diffraction, Raman spectroscopy combined with Density Functional Theory and single-crystal X-ray diffraction (over the temperature range of 163–773 K). For the first time we determine its thermal expansion coefficient (αV =19×10-6 K-1) based on single crystal data, and showed that the crystal structure of Ni5P4 undergoes maximum expansion perpendicular to the c axis, and minimum expansion along the c axis. Ni5P4 has clear Raman spectrum (18 peaks, the most intense and best resolved peaks are 143, 203, 238, 314, 414, 425 and 476 cm-1). Our results evidence that quasi-metallic transition metal phosphides having Me / P ratio > 1 can produce the quality Raman spectra applicable for their characterization.",
keywords = "Halamishite, Ni5P4, Raman, Thermal expansion, X-ray diffraction",
author = "Верещагин, {Олег Сергеевич} and Панькин, {Дмитрий Васильевич} and Горелова, {Людмила Александровна} and Нурсултан Сагатов and Хмельницкая, {Майя Олеговна} and Власенко, {Наталия Сергеевна} and Павел Гаврюшкин and Бритвин, {Сергей Николаевич}",
year = "2025",
month = oct,
day = "1",
doi = "10.1016/j.matchemphys.2025.131642",
language = "English",
volume = "348",
journal = "Materials Chemistry and Physics",
issn = "0254-0584",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Structural insights into thermal behavior and vibrational properties of Ni5P4

AU - Верещагин, Олег Сергеевич

AU - Панькин, Дмитрий Васильевич

AU - Горелова, Людмила Александровна

AU - Сагатов, Нурсултан

AU - Хмельницкая, Майя Олеговна

AU - Власенко, Наталия Сергеевна

AU - Гаврюшкин, Павел

AU - Бритвин, Сергей Николаевич

PY - 2025/10/1

Y1 - 2025/10/1

N2 - First-row transition metal (Me) phosphides are the cost-effective materials in sustainable chemistry, including applications in hydrogen evolution reaction and the development of alkaline-metal-ion batteries. However, thermal behavior and vibrational properties of transition metal phosphides have been poorly studied. We report data on Ni5P4, one of the technologically demanded nickel phosphides, which was investigated by means of scanning electron microscopy, electron microprobe analyses, electron backscatter diffraction, Raman spectroscopy combined with Density Functional Theory and single-crystal X-ray diffraction (over the temperature range of 163–773 K). For the first time we determine its thermal expansion coefficient (αV =19×10-6 K-1) based on single crystal data, and showed that the crystal structure of Ni5P4 undergoes maximum expansion perpendicular to the c axis, and minimum expansion along the c axis. Ni5P4 has clear Raman spectrum (18 peaks, the most intense and best resolved peaks are 143, 203, 238, 314, 414, 425 and 476 cm-1). Our results evidence that quasi-metallic transition metal phosphides having Me / P ratio > 1 can produce the quality Raman spectra applicable for their characterization.

AB - First-row transition metal (Me) phosphides are the cost-effective materials in sustainable chemistry, including applications in hydrogen evolution reaction and the development of alkaline-metal-ion batteries. However, thermal behavior and vibrational properties of transition metal phosphides have been poorly studied. We report data on Ni5P4, one of the technologically demanded nickel phosphides, which was investigated by means of scanning electron microscopy, electron microprobe analyses, electron backscatter diffraction, Raman spectroscopy combined with Density Functional Theory and single-crystal X-ray diffraction (over the temperature range of 163–773 K). For the first time we determine its thermal expansion coefficient (αV =19×10-6 K-1) based on single crystal data, and showed that the crystal structure of Ni5P4 undergoes maximum expansion perpendicular to the c axis, and minimum expansion along the c axis. Ni5P4 has clear Raman spectrum (18 peaks, the most intense and best resolved peaks are 143, 203, 238, 314, 414, 425 and 476 cm-1). Our results evidence that quasi-metallic transition metal phosphides having Me / P ratio > 1 can produce the quality Raman spectra applicable for their characterization.

KW - Halamishite

KW - Ni5P4

KW - Raman

KW - Thermal expansion

KW - X-ray diffraction

UR - https://www.mendeley.com/catalogue/f1f29d8b-034b-3d8a-bbcb-9387ba0f6450/

U2 - 10.1016/j.matchemphys.2025.131642

DO - 10.1016/j.matchemphys.2025.131642

M3 - Article

VL - 348

JO - Materials Chemistry and Physics

JF - Materials Chemistry and Physics

SN - 0254-0584

M1 - 131642

ER -

ID: 142025950