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Article
Publication date: 1 January 1994

Donald V. Borst

Titanium dioxide, the chemically‐based product commonly referred to as white pigment or as titanium pigment, or in the industry, often simply by its chemical formula, TiO2, is not…

Abstract

Titanium dioxide, the chemically‐based product commonly referred to as white pigment or as titanium pigment, or in the industry, often simply by its chemical formula, TiO2, is not a single substance but is actually a broad range of quite different performance products. Because each one is designed to accomplish defined technical purposes in specific applications, they are not generally interchangeable with other applications. While both producers and users of these various TiO2 pigment products refer to them as grades of TiO2, this unfortunate nomenclature masks the performance distinctions of individual titanium dioxide products. Thus some people, and even some producers who should know better, mislabel titanium dioxide as a commodity. Focusing on the fallacy of the commodity assumption is important to understanding the global outlook for the business for users, producers, and investors.

Details

Pigment & Resin Technology, vol. 23 no. 1
Type: Research Article
ISSN: 0369-9420

Article
Publication date: 1 August 1975

G.R. Siddle

Titanium dioxide was introduced as a paint pigment during the late 1920's and thirties, and these early grades were anatase. Rutile grades appeared in the forties and early…

Abstract

Titanium dioxide was introduced as a paint pigment during the late 1920's and thirties, and these early grades were anatase. Rutile grades appeared in the forties and early fifties, but without surface treatments.

Details

Pigment & Resin Technology, vol. 4 no. 8
Type: Research Article
ISSN: 0369-9420

Article
Publication date: 4 January 2016

Chao Ye, Xiufang Wen, Jia-ling Lan, Zhi-qi Cai, Pi-hui Pi, Shou-ping Xu and Yu Qian

The purpose of this paper is to modify light hollow polymer microsphere (LHPM) with titanium dioxide nanoparticles (nano-TiO2) to improve its compatibility with latex and apply…

Abstract

Purpose

The purpose of this paper is to modify light hollow polymer microsphere (LHPM) with titanium dioxide nanoparticles (nano-TiO2) to improve its compatibility with latex and apply the obtained nano-TiO2/LHPM composite particles in external wall thermal insulation coatings.

Design/methodology/approach

The nano-TiO2/LHPM composite particles were prepared via vigorous stirring. The morphology and chemical composition of the produced nano-TiO2/LHPM composite particles were characterized using scanning electron microscopy, energy dispersion spectrum, thermo-gravimetric analyzer and Fourier transform infrared. The performance of this new composite coating was evaluated by checking its stability, density, radiation reflectivity, thermal conductivity and the resulting insulation temperature difference when forming coating film.

Findings

It was found that a 9:1 mass ratio of nano-TiO2/LHPM with total 10 weight per cent composite particles in the thermal insulation paint showed low density, good stability, low thermal conductivity (0.1687 W/m·K) and high insulation temperature difference (5.8°C).

Research limitations/implications

The LHPM can be modified by other nanoparticles to improve its insulation performance in thermal insulation coatings.

Practical implications

This work provides a simple, robust, but effective approach to produce new thermal insulation coatings with nano-TiO2/LHPM composite particles.

Originality/value

This method for surface modification of LHPMs is novel and the modified hollow polymer microspheres could be applied to external wall insulation coatings.

Details

Pigment & Resin Technology, vol. 45 no. 1
Type: Research Article
ISSN: 0369-9420

Keywords

Article
Publication date: 1 January 1978

Fred B. Stieg

Much that has been written on the subject of white hiding power has been considerably less useful to the average paint laboratory than it was intended to be, simply because it has…

Abstract

Much that has been written on the subject of white hiding power has been considerably less useful to the average paint laboratory than it was intended to be, simply because it has been excessively complicated by a complex theory better suited to the research laboratories of pigment producers.

Details

Pigment & Resin Technology, vol. 7 no. 1
Type: Research Article
ISSN: 0369-9420

Article
Publication date: 1 February 1984

B. Rzasa and J. Potencki

The paper presents a comparative analysis of the properties of ruthenate resistor layers produced on alumina substrates and on dielectric layers previously deposited on them. The…

Abstract

The paper presents a comparative analysis of the properties of ruthenate resistor layers produced on alumina substrates and on dielectric layers previously deposited on them. The effect of dielectric type and the peak firing temperature of ruthenate layers upon the value of their resistance and TCR (temperature coefficient of resistance) has been investigated. The reproducibility and stability of these parameters have been evaluated.

Details

Microelectronics International, vol. 2 no. 1
Type: Research Article
ISSN: 1356-5362

Article
Publication date: 18 May 2012

K. Siwińska‐Stefańska, F. Ciesielczyk, A. Kołodziejczak‐Radzimska, D. Paukszta, J. Sójka‐Ledakowicz and T. Jesionowski

The purpose of this paper is to report on a method of synthesis of TiO2‐SiO2 oxide composites characterised by spherically shaped particles with sizes in the micrometric ranges…

Abstract

Purpose

The purpose of this paper is to report on a method of synthesis of TiO2‐SiO2 oxide composites characterised by spherically shaped particles with sizes in the micrometric ranges, which can be applied as a new generation of textile/TiO2‐SiO2 composites with barrier properties against UV radiation. Synthesis and characterisation of TiO2‐SiO2 oxide composites with a high degree of dispersion were performed, and their influence on the barrier properties of textile fabrics was investigated.

Design/methodology/approach

The precipitation was performed with the use of solutions of titanium sulphate and sodium silicate as the precipitating agent, which are cheap alternatives to organic precursors of Ti and Si. The reaction was conducted in an emulsion system, where cyclohexane was used as the organic phase and non‐ionic surfactants NP3 and NP6 as emulsifiers were applied.

Findings

The direction of substrate supply, concentration of the reagents and their ratio and other conditions of precipitation process were found to significantly affect the physicochemical parameters of the pigments obtained. A possibility is provided of manufacturing a new generation of textile/TiO2‐SiO2 composites with barrier properties against UV radiation.

Research limitations/implications

Titanium sulphate, sodium silicate, cyclohexane as the organic phase, and non‐ionic surfactants NP3 and NP6 as emulsifiers, were used.

Practical implications

Synthesis of a new generation of textile/TiO2‐SiO2 composites with barrier properties against UV radiation has been performed. Textile fabrics modified with hybrid composites demonstrated high absorption of UV radiation over the full wavelength range.

Originality/value

Determination of optimum conditions of TiO2‐SiO2 oxide composites precipitation to obtain products with desired physicochemical, dispersive and structural properties. Development of nano‐structural textile composites with barrier properties, protecting against UV radiation.

Article
Publication date: 18 May 2012

Sanjeev Kumar, Narendra K. Verma and Madan L. Singla

The purpose of this paper is to investigate the reflective properties of titania (TiO2) nanoparticle‐based coating.

Abstract

Purpose

The purpose of this paper is to investigate the reflective properties of titania (TiO2) nanoparticle‐based coating.

Design/methodology/approach

TiO2 nanoparticles, synthesised by sol‐gel method, were characterised by X‐ray diffraction (XRD), transmission electron microscopy (TEM), scanning electron microscopy (SEM), and ultraviolet‐visible absorption spectroscopy (UV‐vis). The coating material has been prepared by dispersing titania nanoparticles in an acrylic binder with different pigment to binder weight ratio. The reflectors were prepared by applying this coating material to different coating thicknesses to aluminium sheets.

Findings

In the study reported here, the coating material could produce reflectors with diffuse reflectance, ∼99 per cent, using coating material, having binder by weight ratio between 14 and 20 per cent, and thickness, 0.15 mm. On exposing the developed reflectors to different levels of illumination (upto 20,000 lux), they were still found to have diffuse reflectance of more than 96 per cent almost throughout the visible spectrum.

Practical implications

The fabricated reflectors find applications in commercial optical products, such as: reflective panels, luminaries, etc.

Originality/value

As of today, the reflective coatings used are of conventional type, which employ bulk TiO2 particles. In this study, we are reporting TiO2 nanoparticle‐based highly reflective coating. This is an original work, and, to the best of our knowledge, no one has ever reported on “TiO2 nanoparticle‐based reflective coatings”.

Details

Pigment & Resin Technology, vol. 41 no. 3
Type: Research Article
ISSN: 0369-9420

Keywords

Article
Publication date: 1 January 1975

S. Peter Pappas and Richard M. Fischer

Studies are presented which demonstrate that: (1) irradiation of titanium and zinc oxide pigments produces singlet oxygen; (2) irradiation of titanium dioxide pigments in water…

Abstract

Studies are presented which demonstrate that: (1) irradiation of titanium and zinc oxide pigments produces singlet oxygen; (2) irradiation of titanium dioxide pigments in water yields, hydrogen peroxide; and (3) the formation of singlet oxygen and hydrogen peroxide correlates with chalking tendencies of the pigments. These findings, together with the results of quenching studies, are interpreted in terms of a working hypothesis, for the generation of reactive oxidants, which ties together previous work into a unified scheme. The relative chalking rates of anatase and rutile titanium dioxide as well as the improvement of chalk resistance by surface treatment, are discussed within the framework of this scheme. The role of singlet oxygen in the chalking process, the importance of its presence with regard to the control of chalking, and possible mechanisms for its formation are also discussed.

Details

Pigment & Resin Technology, vol. 4 no. 1
Type: Research Article
ISSN: 0369-9420

Keywords

Article
Publication date: 16 August 2021

Hong Zhang, Sheng Han, Wenjing Hu and Jiusheng Li

The purpose of this paper is to improve the properties of metal nanoparticles which are easy to agglomerate and hard to disperse evenly, thus limiting the application of metal…

Abstract

Purpose

The purpose of this paper is to improve the properties of metal nanoparticles which are easy to agglomerate and hard to disperse evenly, thus limiting the application of metal nanoparticles in grease. A novel technology was proposed for modifying metal oxide to improve the dispersibility of nanoparticles.

Design/methodology/approach

SA-TiO2 nanoparticles were synthesized using an in-situ esterification method followed by surface modification with stearic acid. The microstructure of the nanoparticles was characterized by scanning electron microscope, transmission electron microscope and Fourier transform infrared spectroscopy and their thermal stability was evaluated by thermogravimetric analyzer. The tribological properties of the SA-TiO2 nanoparticles as additives in lithium grease were evaluated with a four-ball tester and TE77 reciprocating friction tester. The worn surfaces of the steel balls were investigated by EDS and XPS.

Findings

The prepared nanoparticles can be well dispersed in the lithium grease and possess much better tribological properties compared to traditional nanoparticles. The results indicated that the excellent tribological performance of SA-TiO2 was attributed to the chemical reaction film composing of Fe2O3, iron oxide and other organic compounds.

Originality/value

This paper provides a method to prevent the agglomeration of nano-TiO2 by surface modification with stearic acid. And the prepared nanoparticles can effectively improve the tribology performance of lithium grease.

Details

Industrial Lubrication and Tribology, vol. 73 no. 6
Type: Research Article
ISSN: 0036-8792

Keywords

Content available

Abstract

Details

Pigment & Resin Technology, vol. 36 no. 5
Type: Research Article
ISSN: 0369-9420

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