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Electrorheological effect of carbonaceous materials with hierarchical porous structures

机译:具有分层多孔结构的碳质材料的电流变效应

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摘要

Carbonaceous materials with different hierarchical porous Structures for electrorheological (ER) dispersed phase have been synthesized by carbonization of as-prepared starch/silica precurser at different temperatures. The N-2 adsorption isotherms show that Cmeso-700 and Cmeso-500 particles have the BET Surface areas of 1028 and 603 m(2) g(-1), respectively. They both have the mesoporous pores with size of about 4.6 nm and the microporous pores (1.1 and 1.5 nm. respectively). The BET surface areas and C/O atomic ratio Of Porous carbon materials can be increased with the carbonization temperatures. The rheological measurements indicate that the Cmeso-700 and Cmeso-500 ERF have the better ER effect resulted from their hierarchical porous Structures. The shear stress of Cmeso-700 ERE is 900 Pa at 1000 s(-1) under 3 W mm(-1), which is almost 4.5 times larger than that of Cmicro-350 ERE. The mesoporous carbon ERFs also show the better sedimentation stability than microporous carbon ERFs. The different ER effect of carbonaceous particles may derive front their different dielectric polarization Property induced by the hierarchical porous structures.
机译:通过在不同温度下碳化制得的淀粉/二氧化硅前驱体,合成了具有不同层次多孔结构的电流变(ER)分散相碳素材料。 N-2吸附等温线表明Cmeso-700和Cmeso-500颗粒的BET表面积分别为1028和603 m(2)g(-1)。它们都具有尺寸为约4.6nm的中孔和微孔(分别为1.1nm和1.5nm)。多孔碳材料的BET表面积和C / O原子比可随着碳化温度的增加而增加。流变学测量表明,Cmeso-700和Cmeso-500 ERF具有较好的ER效果,这归因于其分层的多孔结构。 Cmeso-700 ERE在3 W mm(-1)下1000 s(-1)时的剪切应力为900 Pa,几乎是Cmicro-350 ERE的4.5倍。中孔碳ERF也显示出比微孔碳ERF更好的沉降稳定性。碳质颗粒的不同ER效应可能会导致由分层多孔结构引起的不同的介电极化特性。

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