Microrheological measurement of cellulose solutions using a single particle tracking (IR)

The aim of the research was to develop microrheological measurement system to determine the alpha apparent (aapp ) and the complex shear modulus (G*(@) of microcrystalline cellulose (MCC) solutions based on a single particle tracking technique using video microscopy (VM). A micron sized particle act...

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Main Author: Riyanto,Sugeng
Format: thesis
Language:eng
Published: 2016
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Online Access:https://ir.upsi.edu.my/detailsg.php?det=2854
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spelling oai:ir.upsi.edu.my:28542020-02-27 Microrheological measurement of cellulose solutions using a single particle tracking (IR) 2016 Riyanto,Sugeng QD Chemistry The aim of the research was to develop microrheological measurement system to determine the alpha apparent (aapp ) and the complex shear modulus (G*(@) of microcrystalline cellulose (MCC) solutions based on a single particle tracking technique using video microscopy (VM). A micron sized particle acting as a probe in cellulose solution was tracked by a freeware called Tracker. The temporal displacement of the particle was recorded and analyzed in spectrum domain using custom-made program using MATLAB. Videos were recorded at about 30 fps depending on the recording setting resulted in output of radial frequency range from 0.4 rad/s to 10 rad/s. The results from the local measurement in cellulose solutions were compared with the bulk measurement using rheometer. Since the solution is a kind of nonhomogeneous complex material, which contained long chain fiber, the measurements were dependent on the local position of the probe in the solution. To conclude, the microrheological measurement system was successfully developed using a single particle tracking technique for the cellulose solution. The results were comparable to the common measurement using rheometer. The implication of this study suggested that local measurement in complex material solution might not give the same values of the physical quantities compared to bulk material and the local measurement technique was required sample of less than 1?L only. The developed program offers user-friendly calculation of complex shear modulus from local measurements for other kind of materials; homogenous and nonhomogeneous solutions. 2016 thesis https://ir.upsi.edu.my/detailsg.php?det=2854 https://ir.upsi.edu.my/detailsg.php?det=2854 text eng closedAccess Masters Universiti Pendidikan Sultan Idris Fakulti Sains dan Matematik N/A
institution Universiti Pendidikan Sultan Idris
collection UPSI Digital Repository
language eng
topic QD Chemistry
spellingShingle QD Chemistry
Riyanto,Sugeng
Microrheological measurement of cellulose solutions using a single particle tracking (IR)
description The aim of the research was to develop microrheological measurement system to determine the alpha apparent (aapp ) and the complex shear modulus (G*(@) of microcrystalline cellulose (MCC) solutions based on a single particle tracking technique using video microscopy (VM). A micron sized particle acting as a probe in cellulose solution was tracked by a freeware called Tracker. The temporal displacement of the particle was recorded and analyzed in spectrum domain using custom-made program using MATLAB. Videos were recorded at about 30 fps depending on the recording setting resulted in output of radial frequency range from 0.4 rad/s to 10 rad/s. The results from the local measurement in cellulose solutions were compared with the bulk measurement using rheometer. Since the solution is a kind of nonhomogeneous complex material, which contained long chain fiber, the measurements were dependent on the local position of the probe in the solution. To conclude, the microrheological measurement system was successfully developed using a single particle tracking technique for the cellulose solution. The results were comparable to the common measurement using rheometer. The implication of this study suggested that local measurement in complex material solution might not give the same values of the physical quantities compared to bulk material and the local measurement technique was required sample of less than 1?L only. The developed program offers user-friendly calculation of complex shear modulus from local measurements for other kind of materials; homogenous and nonhomogeneous solutions.
format thesis
qualification_name
qualification_level Master's degree
author Riyanto,Sugeng
author_facet Riyanto,Sugeng
author_sort Riyanto,Sugeng
title Microrheological measurement of cellulose solutions using a single particle tracking (IR)
title_short Microrheological measurement of cellulose solutions using a single particle tracking (IR)
title_full Microrheological measurement of cellulose solutions using a single particle tracking (IR)
title_fullStr Microrheological measurement of cellulose solutions using a single particle tracking (IR)
title_full_unstemmed Microrheological measurement of cellulose solutions using a single particle tracking (IR)
title_sort microrheological measurement of cellulose solutions using a single particle tracking (ir)
granting_institution Universiti Pendidikan Sultan Idris
granting_department Fakulti Sains dan Matematik
publishDate 2016
url https://ir.upsi.edu.my/detailsg.php?det=2854
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