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Dive into the research topics where Chris Plackowski is active.

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Featured researches published by Chris Plackowski.


Langmuir | 2011

Physical and Chemical Analysis of Elemental Sulfur Formation during Galena Surface Oxidation

Marc A. Hampton; Chris Plackowski; Anh V. Nguyen

The surface oxidation of sulfide minerals, such as galena (PbS), in aqueous solutions is of critical importance in a number of applications. A comprehensive understanding of the formation of oxidation species at the galena surface is still lacking. Much controversy over the nature of these oxidation products exists. A number of oxidation pathways have been proposed, and experimental evidence for the formation of elemental sulfur, metal polysulfides, and metal-deficient lead sulfides in acidic conditions has been shown and argued. This paper provides further insight into the electrochemical behavior of galena at pH 4.5. Utilizing a novel experimental system that combines in situ electrochemical control and AC mode atomic force microscopy (AFM) surface imaging, the formation and growth of nanoscopic domains on the galena surface are detected and examined at anodic potentials. AFM phase images indicate that these domains have different material properties to the underlying galena. Continued oxidation results in nanoscopic pitting and the formation of microscopic surface domains, which are confirmed to be elemental sulfur by Raman spectroscopy. Further clarification of the presence of elemental sulfur is provided by Cryo-XPS. Polysulfide and metal-deficient sulfide could not be detected within this system.


Scientific Reports | 2016

Floating mechanism of a small liquid marble

Chin Hong Ooi; Chris Plackowski; Anh V. Nguyen; Raja Vadivelu; James Anthony St John; Dzung Viet Dao; Nam-Trung Nguyen

Flotation of small solid objects and liquid droplets on water is critical to natural and industrial activities. This paper reports the floating mechanism of liquid marbles, or liquid droplets coated with hydrophobic microparticles. We used X-ray computed tomography (XCT) to acquire cross-sectional images of the floating liquid marble and interface between the different phases. We then analysed the shape of the liquid marble and the angles at the three-phase contact line (TPCL). We found that the small floating liquid marbles follow the mechanism governing the flotation of solid objects in terms of surface tension forces. However, the contact angles formed and deformation of the liquid marble resemble that of a sessile liquid droplet on a thin, elastic solid. For small liquid marbles, the contact angle varies with volume due to the deformability of the interface.


Langmuir | 2013

Fundamental studies of electrochemically controlled surface oxidation and hydrophobicity of natural enargite

Chris Plackowski; Marc A. Hampton; Anh V. Nguyen; W.J. Bruckard

The surface oxidation and hydrophobicity of natural enargite (Cu(3)AsS(4)) and the formation of oxidation species at the mineral surface have been examined by a novel experimental approach that combines electrochemical techniques and atomic force microscopy (AFM). This approach allows for in-situ, synchronized electrochemical control and examination of the oxidative surface morphology of enargite. Combined with ex-situ cryo X-ray photoelectron spectroscopy surface analysis, the surface speciation of enargite surface oxidation has been obtained, comparing the newly fractured natural enargite surface with those that have been electrochemically oxidized at pHs 4 and 10. At pH 4, surface layer formations consisting of metal-deficient sulfide and elemental sulfur were identified, associated with a limited increase in root-mean-square (rms) roughness (1.228 to 3.143 nm) and apparent heterogeneous distribution of surface products as demonstrated by AFM imaging. A mechanism of initial rapid dissolution of Cu followed by diffusion-limited surface layer deposition was identified. At pH 10, a similar mechanism was identified although the differences between the initial and diffusion-limited phases were less definitive. Surface species were identified as copper sulfate and copper hydroxide. A significant increase in surface roughness was found as rms roughness increased from 0.795 to 9.723 nm. Dynamic (receding) contact angle measurements were obtained by a droplet evaporation method. No significant difference in the contact angle on a surface oxidized at pH 10 and the freshly polished surface was found. A significant difference was found between the polished surface and that oxidized at pH 4, with an increase in contact angle of about 13° (46° to 59°) after oxidation. Competing effects of hydrophilic (copper oxides and hydroxides) and hydrophobic (elemental sulfur) species on the mineral surface under oxidizing conditions at pH 4 and the change in surface roughness at pH 10 may contribute to the observed effects of electrochemically controlled oxidation on enargite hydrophobicity.


Minerals Engineering | 2012

A critical review of surface properties and selective flotation of enargite in sulphide systems

Chris Plackowski; Anh V. Nguyen; W.J. Bruckard


Minerals Engineering | 2014

Surface characterisation, collector adsorption and flotation response of enargite in a redox potential controlled environment

Chris Plackowski; W.J. Bruckard; Anh V. Nguyen


Minerals Engineering | 2014

An XPS investigation of surface species formed by electrochemically induced surface oxidation of enargite in the oxidative potential range

Chris Plackowski; Marc A. Hampton; W.J. Bruckard; Anh V. Nguyen


Minerals Engineering | 2013

The effects of X-ray irradiation and temperature on the formation and stability of chemical species on enargite surfaces during XPS

Chris Plackowski; Marc A. Hampton; Anh V. Nguyen; W.J. Bruckard


Minerals Engineering | 2017

The surface properties of pyrite coupled with gold in the presence of oxygen

Yangyang Huai; Chris Plackowski; Yongjun Peng


Powder Technology | 2016

X-ray photoelectron spectroscopic investigation into the surface effects of sulphuric acid treated natural zeolite

Xiaoyu Wang; Chris Plackowski; Anh V. Nguyen


Minerals Engineering | 2016

The effect of calcium, magnesium, and sulphate ions on the surface properties of copper activated sphalerite

Majid Ejtemaei; Chris Plackowski; Anh V. Nguyen

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Anh V. Nguyen

University of Queensland

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W.J. Bruckard

Commonwealth Scientific and Industrial Research Organisation

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Xiaoyu Wang

University of Queensland

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Yangyang Huai

University of Queensland

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Yongjun Peng

University of Queensland

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Daniel Pineda

University of Queensland

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