Synthesis and size control of monodispersed BaTiO3–PVP nanoparticles

Monodispersed, spherical nanoparticles of the BaTiO3–polyvinylpyrrolidone (BT–PVP) composite were synthesized through the surface modification of the oxide BT by the polymer PVP, using TiCl4, BaCl2, PVP, and KOH (as the mineralizer) in an aqueous solution. To reduce the size of the particles and ens...

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Main Authors: Jinhui Li, Koji Inukai, Yosuke Takahashi, Woosuck Shin
Format: Article
Language:English
Published: Taylor & Francis Group 2016-12-01
Series:Journal of Asian Ceramic Societies
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2187076416300847
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spelling doaj-93ecc060ba28488db270e5debae1bef32021-05-02T01:27:12ZengTaylor & Francis GroupJournal of Asian Ceramic Societies2187-07642016-12-014439440210.1016/j.jascer.2016.09.001Synthesis and size control of monodispersed BaTiO3–PVP nanoparticlesJinhui Li0Koji Inukai1Yosuke Takahashi2Woosuck Shin3Department of Frontier Materials, Nagoya Institute of Technology, Nagoya 466-8555, JapanR&D Center, Noritake Co., Ltd., Miyoshi 470-02, JapanR&D Center, Noritake Co., Ltd., Miyoshi 470-02, JapanDepartment of Frontier Materials, Nagoya Institute of Technology, Nagoya 466-8555, JapanMonodispersed, spherical nanoparticles of the BaTiO3–polyvinylpyrrolidone (BT–PVP) composite were synthesized through the surface modification of the oxide BT by the polymer PVP, using TiCl4, BaCl2, PVP, and KOH (as the mineralizer) in an aqueous solution. To reduce the size of the particles and ensure that they were monodispersed, the concentrations of the Ba and Ti sources were increased and the reaction parameters such as reaction temperature, reaction time, and KOH concentration were optimized. As a result, monodispersed BT–PVP particles with an average diameter of 114 nm (coefficient of variation, CV = 20.0%) were obtained from a Ba-rich solution ([Ti]/[Ba] = 0.2 M:0.3 M; [KOH] = 1.4 M), and their dynamic light scattering in an aqueous suspension demonstrated that the average diameter was 162 nm (CV = 26.6%). A higher KOH concentration resulted in smaller particles, but the excess KOH promoted particle aggregation and PVP gelation. The mechanism of dispersion and aggregation of BT–PVP will be discussed in detail.http://www.sciencedirect.com/science/article/pii/S2187076416300847NanoparticleMonodispersedBarium titanatePolyvinylpyrrolidoneParticle sizeSources concentrationReduced size
collection DOAJ
language English
format Article
sources DOAJ
author Jinhui Li
Koji Inukai
Yosuke Takahashi
Woosuck Shin
spellingShingle Jinhui Li
Koji Inukai
Yosuke Takahashi
Woosuck Shin
Synthesis and size control of monodispersed BaTiO3–PVP nanoparticles
Journal of Asian Ceramic Societies
Nanoparticle
Monodispersed
Barium titanate
Polyvinylpyrrolidone
Particle size
Sources concentration
Reduced size
author_facet Jinhui Li
Koji Inukai
Yosuke Takahashi
Woosuck Shin
author_sort Jinhui Li
title Synthesis and size control of monodispersed BaTiO3–PVP nanoparticles
title_short Synthesis and size control of monodispersed BaTiO3–PVP nanoparticles
title_full Synthesis and size control of monodispersed BaTiO3–PVP nanoparticles
title_fullStr Synthesis and size control of monodispersed BaTiO3–PVP nanoparticles
title_full_unstemmed Synthesis and size control of monodispersed BaTiO3–PVP nanoparticles
title_sort synthesis and size control of monodispersed batio3–pvp nanoparticles
publisher Taylor & Francis Group
series Journal of Asian Ceramic Societies
issn 2187-0764
publishDate 2016-12-01
description Monodispersed, spherical nanoparticles of the BaTiO3–polyvinylpyrrolidone (BT–PVP) composite were synthesized through the surface modification of the oxide BT by the polymer PVP, using TiCl4, BaCl2, PVP, and KOH (as the mineralizer) in an aqueous solution. To reduce the size of the particles and ensure that they were monodispersed, the concentrations of the Ba and Ti sources were increased and the reaction parameters such as reaction temperature, reaction time, and KOH concentration were optimized. As a result, monodispersed BT–PVP particles with an average diameter of 114 nm (coefficient of variation, CV = 20.0%) were obtained from a Ba-rich solution ([Ti]/[Ba] = 0.2 M:0.3 M; [KOH] = 1.4 M), and their dynamic light scattering in an aqueous suspension demonstrated that the average diameter was 162 nm (CV = 26.6%). A higher KOH concentration resulted in smaller particles, but the excess KOH promoted particle aggregation and PVP gelation. The mechanism of dispersion and aggregation of BT–PVP will be discussed in detail.
topic Nanoparticle
Monodispersed
Barium titanate
Polyvinylpyrrolidone
Particle size
Sources concentration
Reduced size
url http://www.sciencedirect.com/science/article/pii/S2187076416300847
work_keys_str_mv AT jinhuili synthesisandsizecontrolofmonodispersedbatio3pvpnanoparticles
AT kojiinukai synthesisandsizecontrolofmonodispersedbatio3pvpnanoparticles
AT yosuketakahashi synthesisandsizecontrolofmonodispersedbatio3pvpnanoparticles
AT woosuckshin synthesisandsizecontrolofmonodispersedbatio3pvpnanoparticles
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