Synthesis and Characterization of Porous Carbon/Nickel Oxide Nanocomposites for Gas Storage and Negatronic Devices

被引:7
作者
Ben Mansour, N. [1 ]
Djeridi, W. [1 ,2 ]
El Mir, L. [1 ]
机构
[1] Gabes Univ, Lab Phys Mat & Nanomat Appl Environm LaPhyMNE, Fac Sci Gabes, Gabes, Tunisia
[2] Gabes Univ, Res Lab Engn Proc & Ind Syst, Natl Sch Engineers Gabes, Gabes, Tunisia
关键词
Porous organic; inorganic nanocomposites; Sol-gel; Pyrolysis temperature; CO2; adsorption; Negative differential resistance; Electrical conductivity; NEGATIVE DIFFERENTIAL RESISTANCE; ELECTRICAL-PROPERTIES; MAGNETIC NANOPARTICLES; SWITCHING PHENOMENON; CARBON-BLACK; THIN-FILMS; CHALCOGENIDE; NIO; ADSORPTION; STABILITY;
D O I
10.1007/s10904-018-0978-5
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Porous organic/inorganic nanocomposites were synthesized by sol-gel technique after the incorporation of nickel oxide (NiO) nanoparticles in carbon composite based on pyrogallol and formaldehyde (PF) using picric acid as catalyst. After a drying step, the samples were heated during 2h at different pyrolysis temperatures from 600 to 1000 degrees C in tubular furnace under nitrogen atmosphere. The XRD pattern exhibit that PF composite is amorphous even after thermal treatment at 1000 degrees C. On the other hand, the PF/NiO nanocomposites are crystallized with the appearance of the graphite structure at high pyrolysis temperature. The gas adsorption capacities for CO2 indicate that the PF composite has a tendency to adsorb CO2 higher than PF/NiO nanocomposite. In fact, the maximum value of capacity is of the order 7.5mmol/g in PF composite and 6.5mmol/g in PF/NiO nanocomposite. The dc conductivity shows the dominance of percolation phenomenon and explained by two models; the three dimensions variable range hopping and the nearest neighbor hopping. The voltage-current V(I) characteristics show the presence of negative differential resistance at room measurement temperature in PF/NiO-625 degrees C sample. The ac conductance is attributed to different origins, so it is decried by two models, like hopping conduction mechanism in PF-675 degrees C composite and small polaron hopping model in PF/NiO-625 degrees C nanocomposite.
引用
收藏
页码:192 / 202
页数:11
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