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Correlating membrane morphology and its performance on biosensor

Correlating membrane morphology and its performance on biosensor / Nurul Aini Zulkifly
Kebelakangan ini, semakin banyak penyelidikan tentang kaedah untuk mensintesis membran. Kajian ini akan menilai pengesanan asid askorbik melalui aliran penyerapan sisi dan imobilisasi protein yang dipengaruhi oleh morfologi membran. Dalam kerja ini, membran telah disediakan dengan mencampurkan Nylon 6 sebagai polimer dan metanol sebagai pelarut. Membran telah disediakan dengan jumlah berat polimer yang berbeza iaitu 18%, 22% dan 25%. Setiap membran berbeza dalam morfologinya yang akan mempengaruhi persembahan mereka. Keputusan menunjukkan bahawa kepekatan polimer yang lebih rendah (18%) akan memberi lebih banyak liang berbanding kepekatan polimer yang tinggi (25%). Dari imej Transformasi Pantulan Inframerah Fourier (FTIR), kita boleh mengatakan bahawa kepekatan polimer yang lebih tinggi mengandungi penyerapan tinggi amide I (0.75) dan amide II (0.63) kumpulan berfungsi. Di samping itu, morfologi yang berbeza telah memberikan persembahan yang berbeza dalam ujian penyerapan sisi dan imobilisasi protein. Membran dengan kepekatan polimer yang lebih rendah (18%) memerlukan waktu penyerapan sisi pendek (6.87 min, pergerakan cepat) tetapi immobilisasi protein yang lebih rendah (1706.21 mg / cm) pada 1000 ppm Bovine Serum Albumin (BSA). Penemuan dari kerja ini menunjukkan bahawa pentingnya morfologi membran untuk aplikasi penderia biosensor. _______________________________________________________________________________________________________ In recent years, a growing number of methods for synthesising membrane research have been emerged. In this work, membrane were prepared by mixing nylon 6 as polymer and methanol as solvent. The membrane were prepared with different amount of polymer which are 18 wt%, 22 wt% and 25 wt%. Each membrane are different in its morphology. Results showed that lower polymer concentration (18 wt%) will give more porous membrane compared to high polymer concentration (25 wt%). From Fourier Transform Infrared Reflectance (FTIR) images, we can said that higher polymer concentration contains high absorbance of amide I (0.75) and amide II (0.63) functional groups. In addition, different morphology had gave different performances in lateral wicking test and protein immobilization. Membrane with lower polymer concentration (18 wt %) required shorter lateral wicking time (6.87 min, fast movement) but lower protein immobilized (1706.21 mg/cm) at 1000 ppm of BSA. Findings from this work reflect the important of membrane morphologies to affect the sensing applications of a sensor.
Contributor(s):
Nurul Aini Zulkifly - Author
Primary Item Type:
Final Year Project
Identifiers:
Accession Number : 875008153
Language:
English
Subject Keywords:
membrane; methanol; solvent
First presented to the public:
6/1/2019
Original Publication Date:
6/28/2019
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Chemical Engineering
Citation:
Extents:
Number of Pages - 75
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2019-07-01 11:00:30.25
Submitter:
Mohd Jasnizam Mohd Salleh

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