Journal
POLIMERY
Volume 65, Issue 5, Pages 363-370Publisher
INDUSTRIAL CHEMISTRY RESEARCH INST
DOI: 10.14314/polimery.2020.5.4
Keywords
sugar palm nanocellulose; sugar palm starch; biopolymer; resistivity; conductivity
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Funding
- HICoE grant from Ministry of Education Malaysia [6369107]
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In this study, the effect of sugar palm nanocrystalline cellulose (SPNCC) loading (0.00-0.10 wt %) on the electrical resistance, resistivity, and conductivity of SPS/SPNCC (SPS - sugar palm starch) nanocomposite films were evaluated. The experiments were conducted using the four-probe method and Ohm's law, resistivity and conductivity equations were utilized to obtain the electrical properties. The results revealed that the resistivity values of SPS/SPNCC films were found to be in the range of 3.1 . 10(2) to 1.5 . 10(4) (Omega . cm).
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