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Rapid stopped flow assembly of multicore iron oxide nanoparticle

Rapid stopped flow assembly of multicore iron oxide nanoparticle / Harivindren Asokan
Formasi nanopartikel besi oksida (IONP) melalui kaedah perhentian aliran pantas dijalankan menggunakan RX2000 Rapid Mixing Unit. IONP multiteras telah distabilkan menggunakan polimer PSS 70k dengan pelbagai kepekatan IONP dari 10ppm hingga 50ppm. Dengan masa yang ditetapkan pada satu minit, kinetik penjerapan telah diperolehi. Keputusal kinetik penjerapan tidak stabil dan bising, dan membawa kepada kesimpulan bahawa penyalutan polimer pada IONP tidak berlaku. Oleh sebab sifat IONP untuk menggumpal and memendap, kluster telah terbentuk sebelum kerja eksperimen bermula, dan telah mewakili gerakan penyebaran, bukannya kinetik penjerapan yang dikehendaki. Dengan ini, dapat disimpulkan bahawa kaedah perhentian aliran pantas tidak boleh menghasilkan multiteras zarah nano besi oksida. _______________________________________________________________________________________________________ The rapid stopped-flow assembly of multicore iron oxide nanoparticle (IONP) was performed using the RX2000 Rapid Mixing Unit. IONP was to be stabilized using polymer PSS (Poly(sodium(4)styrenesulfonate)70k with varying concentrations of IONP from 10ppm to 50ppm. With a fixed time of one minute, the adsorption kinetics were obtained. Adsorption kinetic results were unstable and noisy, leading to conclusions that ineffective coating has taken place. Due to the nature of IONP to agglomerate and sedimentate, clusters were formed even before experimental work began, hence leading to kinetics representing the diffusion motion, rather than the adsorption kinetics that is intended. It was concluded that rapid stopped-flow method was not feasible to form multicore iron oxide nanoparticle.
Contributor(s):
Harivindren Asokan - Author
Primary Item Type:
Final Year Project
Identifiers:
Accession Number : 875007261
Barcode : 00003107141
Language:
English
Subject Keywords:
iron oxide nanoparticle; adsorption kinetics; rapid stopped-flow method
First presented to the public:
5/1/2017
Original Publication Date:
4/24/2018
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Chemical Engineering
Citation:
Extents:
Number of Pages - 54
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2018-04-24 15:06:15.72
Date Last Updated
2019-01-07 11:24:32.9118
Submitter:
Mohd Jasnizam Mohd Salleh

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