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Multifunctional green pigment with UV protection based on capping agent-engineered Cr-doped hydroxyapatite nanoparticles. / Колоколова, Наталья Дмитриевна; Сюккалова, Евгения Александровна; Восканян, Лусинэ Армановна; Маркарян, Артур Ашотович; Бобрышева, Наталья Петровна; Осмоловский, Михаил Глебович; Ткаченко, Дмитрий; Вознесенский, Михаил Андреевич; Осмоловская, Ольга Михайловна.

In: Nanoscale, Vol. 18, No. 19, 21.05.2026, p. 10383-10396.

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@article{6f708a674a2246fab88f1fa70b441a7d,
title = "Multifunctional green pigment with UV protection based on capping agent-engineered Cr-doped hydroxyapatite nanoparticles",
abstract = "BB creams are multifunctional cosmetic formulations that combine tone correction, skin refinement, and sun protection. Common limitations of conventional UV filters and pigments include low photostability, environmental toxicity and skin penetration. To address these limitations, we developed chromium-doped hydroxyapatite (Cr-HAp) nanoparticles (with an effective dopant concentration ∼10 at%) modified with succinic, tartaric, and etidronic acids. Nanoparticles were synthesised via co-precipitation and hydrothermal treatment, with structural and surface modifications confirmed by XRD, FTIR spectroscopy, TEM, and XPS. The use of organic acids enabled a controlled oriented attachment (OA) process, allowing for precise morphology control with nanoparticle lengths ranging from short rods (∼15 nm) to elongated needles (up to 150 nm). Cr3+ incorporation into the hydroxyapatite lattice produced stable green pigments with adjustable CIELab colour coordinates (a* from ∼–12 to –8 and b* from ∼0 to 2.5) and lightness (70 to 85). Optical characterisation demonstrated effective UV protection through absorption across the UVB spectrum (280–320 nm), which was modulated by the specific capping agent and synthesis conditions. A prototype BB cream incorporating 1.23% w/w of modified Cr-HAp nanoparticles demonstrated their suitability as multifunctional cosmetic ingredients, successfully combining UV shielding, colour correction, and environmentally conscious formulation design.",
author = "Колоколова, {Наталья Дмитриевна} and Сюккалова, {Евгения Александровна} and Восканян, {Лусинэ Армановна} and Маркарян, {Артур Ашотович} and Бобрышева, {Наталья Петровна} and Осмоловский, {Михаил Глебович} and Дмитрий Ткаченко and Вознесенский, {Михаил Андреевич} and Осмоловская, {Ольга Михайловна}",
note = "Acknowledgements The work was financially supported by the Russian Science Foundation, project no. 24-23-00225, https://rscf.ru/en/project/24-23-00225/. Scientific research was performed at the research park of St Petersburg State University: Centre for X-ray Diffraction Studies, Centre for Physical Methods of Surface Investigation, Interdisciplinary Resource Centre for Nanotechnology, Chemical Analysis and Materials Research Centre, Centre for Innovative Technologies of Composite Nanomaterials, Computing Centre, Centre for Optical and Laser Materials Research, Centre for Diagnostics of Functional Materials for Medicine, Pharmacology and Nanoelectronics.",
year = "2026",
month = may,
day = "21",
doi = "10.1039/D5NR05367F",
language = "English",
volume = "18",
pages = "10383--10396",
journal = "Nanoscale",
issn = "2040-3364",
publisher = "Royal Society of Chemistry",
number = "19",

}

RIS

TY - JOUR

T1 - Multifunctional green pigment with UV protection based on capping agent-engineered Cr-doped hydroxyapatite nanoparticles

AU - Колоколова, Наталья Дмитриевна

AU - Сюккалова, Евгения Александровна

AU - Восканян, Лусинэ Армановна

AU - Маркарян, Артур Ашотович

AU - Бобрышева, Наталья Петровна

AU - Осмоловский, Михаил Глебович

AU - Ткаченко, Дмитрий

AU - Вознесенский, Михаил Андреевич

AU - Осмоловская, Ольга Михайловна

N1 - Acknowledgements The work was financially supported by the Russian Science Foundation, project no. 24-23-00225, https://rscf.ru/en/project/24-23-00225/. Scientific research was performed at the research park of St Petersburg State University: Centre for X-ray Diffraction Studies, Centre for Physical Methods of Surface Investigation, Interdisciplinary Resource Centre for Nanotechnology, Chemical Analysis and Materials Research Centre, Centre for Innovative Technologies of Composite Nanomaterials, Computing Centre, Centre for Optical and Laser Materials Research, Centre for Diagnostics of Functional Materials for Medicine, Pharmacology and Nanoelectronics.

PY - 2026/5/21

Y1 - 2026/5/21

N2 - BB creams are multifunctional cosmetic formulations that combine tone correction, skin refinement, and sun protection. Common limitations of conventional UV filters and pigments include low photostability, environmental toxicity and skin penetration. To address these limitations, we developed chromium-doped hydroxyapatite (Cr-HAp) nanoparticles (with an effective dopant concentration ∼10 at%) modified with succinic, tartaric, and etidronic acids. Nanoparticles were synthesised via co-precipitation and hydrothermal treatment, with structural and surface modifications confirmed by XRD, FTIR spectroscopy, TEM, and XPS. The use of organic acids enabled a controlled oriented attachment (OA) process, allowing for precise morphology control with nanoparticle lengths ranging from short rods (∼15 nm) to elongated needles (up to 150 nm). Cr3+ incorporation into the hydroxyapatite lattice produced stable green pigments with adjustable CIELab colour coordinates (a* from ∼–12 to –8 and b* from ∼0 to 2.5) and lightness (70 to 85). Optical characterisation demonstrated effective UV protection through absorption across the UVB spectrum (280–320 nm), which was modulated by the specific capping agent and synthesis conditions. A prototype BB cream incorporating 1.23% w/w of modified Cr-HAp nanoparticles demonstrated their suitability as multifunctional cosmetic ingredients, successfully combining UV shielding, colour correction, and environmentally conscious formulation design.

AB - BB creams are multifunctional cosmetic formulations that combine tone correction, skin refinement, and sun protection. Common limitations of conventional UV filters and pigments include low photostability, environmental toxicity and skin penetration. To address these limitations, we developed chromium-doped hydroxyapatite (Cr-HAp) nanoparticles (with an effective dopant concentration ∼10 at%) modified with succinic, tartaric, and etidronic acids. Nanoparticles were synthesised via co-precipitation and hydrothermal treatment, with structural and surface modifications confirmed by XRD, FTIR spectroscopy, TEM, and XPS. The use of organic acids enabled a controlled oriented attachment (OA) process, allowing for precise morphology control with nanoparticle lengths ranging from short rods (∼15 nm) to elongated needles (up to 150 nm). Cr3+ incorporation into the hydroxyapatite lattice produced stable green pigments with adjustable CIELab colour coordinates (a* from ∼–12 to –8 and b* from ∼0 to 2.5) and lightness (70 to 85). Optical characterisation demonstrated effective UV protection through absorption across the UVB spectrum (280–320 nm), which was modulated by the specific capping agent and synthesis conditions. A prototype BB cream incorporating 1.23% w/w of modified Cr-HAp nanoparticles demonstrated their suitability as multifunctional cosmetic ingredients, successfully combining UV shielding, colour correction, and environmentally conscious formulation design.

UR - https://www.mendeley.com/catalogue/6690d70b-f8ac-3d45-9de0-a6da35b6c566/

U2 - 10.1039/D5NR05367F

DO - 10.1039/D5NR05367F

M3 - Article

VL - 18

SP - 10383

EP - 10396

JO - Nanoscale

JF - Nanoscale

SN - 2040-3364

IS - 19

ER -

ID: 154181695