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Featured researches published by Tsz Nok Ng.


RSC Advances | 2015

Direct manipulation of particle size and morphology of ordered mesoporous silica by flow synthesis

Tsz Nok Ng; Xinqing Chen; King Lun Yeung

The precision by which the fluid mixing, flow pattern, and reaction can be manipulated in a flow-synthesis reactor enables the deliberate preparation of ordered mesoporous silicas (OMS) of controlled particle size (ca. 50 to 650 nm) and shapes (i.e., spheres and random), as well as complex microstructures (i.e., hollow spheres). Fluid mixing and flow pattern were generated using Tee- and slit interdigital micromixers under laminar and Taylor flow conditions, while hydrolysis reactions was governed by the alkoxide precursors (i.e. TEOS & TMOS) and temperature. The hollow OMS spheres can host molecules and clusters as demonstrated by the incorporation of ferrocene and iron nanoparticles.


Chinese Journal of Chemical Engineering | 2012

Assessment of Sericin Biosorbent for Selective Dye Removal

Xinqing Chen; Koon Fung Lam; Shuk Fong Mak; Wai Kwong Ching; Tsz Nok Ng; King Lun Yeung

Abstract The silk sericin is the main residue in silk production and it is found to be a low cost and efficient biosorbent. In this study, sericin was characterized with various techniques including SEM (scanning electron microscope), XRD, N 2 physisorption, FTIR (Fourier transformed infrared spectroscopy) and XPS (X-ray photoelectron spectroscopy). The nitrogen content of sericin was ca. 8.5 mmol·g −1 according to elemental analysis. Dye adsorption by sericin biosorbent was investigated with the acid yellow (AY), methylene blue (MB) and copper (II) phthalocyanine-3,4′4″4‴-tetrasulfonic acid (CuPc) dyes from water. Sericin displayed large capacity for AY and CuPc adsorption with adsorption capacities of respectively 3.1 and 0.35 mmol·g −1 , but it did not adsorbed methylene blue dye. This selectivity is due to the basicity of amide groups in sericin biosorbents.


Archive | 2015

Flow synthesis and positioning of porous materials in microreactors

Tsz Nok Ng


Materials Engineering and Sciences Division 2015 - Core Programming Area at the 2015 AIChE Annual Meeting | 2015

Manipulating particle size and morphology of mesoporous silica

Tsz Nok Ng; Kailin He; King Lun Yeung


Materials Engineering and Sciences Division 2015 - Core Programming Area at the 2015 AIChE Annual Meeting | 2015

Freestanding ZIF-8 membrane in microfluidic channel

Tsz Nok Ng; Kailin He; King Lun Yeung


Catalysis Today | 2014

Corrigendum to “Flow-synthesis of mesoporous silicas and their use in the preparation of magnetic catalysts for Knoevenagel condensation reactions” [Catalysis Today 204 (2013) 140–157]

Xinqing Chen; Tsz Nok Ng; Manuel Arruebo; King Lun Yeung


Archive | 2013

Freestanding Zeolitic Imidazolate Frameworks Membrane in Microchannel

Viola Sim; Tsz Nok Ng; King Lun Yeung; Xingqing Chen


Archive | 2013

Selective Adsorption and Removal of Heavy Metals From Seawater By Nanosorbents

Viola Sim; Tsz Nok Ng; King Lun Yeung; Xingqing Chen


Abstracts of Papers of the American Chemical Society | 2012

Flow synthesis of microporous and mesoporous solid in microfluidic reactor

Tsz Nok Ng; Xingqing Chen; Wei Han; King Lun Yeung


Abstracts of Papers of the American Chemical Society | 2012

Selective removal of Cu2+ and CrO42- from natural waters by nanoporous sorbents modified by mono-/di- / tri-amino-organoalkoxysilanes

Xinqing Chen; Tsz Nok Ng; Wei Han; King Lun Yeung

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King Lun Yeung

Hong Kong University of Science and Technology

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Xinqing Chen

Chinese Academy of Sciences

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Kailin He

Hong Kong University of Science and Technology

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Viola Sim

Hong Kong University of Science and Technology

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Wei Han

Hong Kong University of Science and Technology

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Koon Fung Lam

Hong Kong University of Science and Technology

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Shuk Fong Mak

Hong Kong University of Science and Technology

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