Magnetic nanocellulose: influence of structural features on conductivity and magnetic properties

被引:2
|
作者
Mustapic, Mislav [1 ]
Bafti, Arijeta [2 ]
Glumac, Zvonko [1 ]
Pavic, Luka [3 ]
Skoko, Zeljko [4 ]
Segota, Suzana [3 ]
Klaser, Teodoro [3 ]
Nedeljkovic, Robert [1 ]
Masud, Mostafa Kamal [5 ]
Alothman, Asma A. [6 ]
Mushab, Mohammed Sheikh Saleh [6 ]
Al Hossain, Md Shahriar [5 ,7 ]
机构
[1] Univ Josip Juraj Strossmayer Osijek, Dept Phys, Trg Ljudevita Gaja 6, Osijek 31000, Croatia
[2] Univ Zagreb, Fac Chem Engn & Technol, Marulicev Trg 19, Zagreb 10000, Croatia
[3] Rudjer Boskovic Inst, Bijenicka Cesta 54, Zagreb 10000, Croatia
[4] Univ Zagreb, Fac Sci, Dept Phys, Bijenicka C 32, Zagreb 10000, Zagreb, Croatia
[5] Univ Queensland, Australian Inst BioEngn & Nanotechnol, AIBN, Brisbane, Qld 4072, Australia
[6] King Saud Univ, Coll Sci, Dept Chem, Riyadh 11451, Saudi Arabia
[7] Univ Queensland, Fac Engn, Architecture & Informat Technol, Brisbane, Qld 4072, Australia
基金
澳大利亚研究理事会;
关键词
Fe3O4; nanoparticles; Cellulose nanofibres; DC conductivity; Yang-Lee zeros; Continuous percolation; NANOPARTICLES;
D O I
10.1007/s10570-022-04956-1
中图分类号
TB3 [工程材料学]; TS [轻工业、手工业、生活服务业];
学科分类号
0805 ; 080502 ; 0822 ;
摘要
Magnetic cellulose (MC) is prepared by hydrolysis of iron precursors in an aqueous dispersion of cellulose nanofibers. A thin, flexible film was then prepared by removing the water and drying the sample in a hot press at 110 degrees C followed by the removal of the water. Structural analysis of MC was performed and correlated with the measurement of electromagnetic properties. The magnetic cellulose showed high magnetic saturation of 68 emu/g with characteristic superparamagnetic behaviour, and conductivity in a range of semiconductors, with an increase of direct current (DC) conductivity with increasing temperature. Modification of cellulose with Fe3O4 has a positive effect on the DC conductivity and lower limit that needs to be exceeded to achieve a stable and sustainable conductivity in the range of - 5-20 x 10(-9) (Omega cm)(-1) @30 degrees C is 65 wt% of the Fe3O4 for studied MC composites. The surface roughness of the magnetic cellulose shows a dynamic change with increasing temperature, which is closely related to the enhancement of MC conductivity. A theoretical model of the conductivity is calculated based on continuous 2D percolation and shows an interesting agreement with the experimental results. [GRAPHICS] .
引用
收藏
页码:1149 / 1169
页数:21
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