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Pore structure control of porous carbon obtained from phenol formaldehyde resin and ethylene glycol: the effect of H3BO3 on the pore structure

机译:从酚醛树脂和乙二醇中获得的多孔碳的孔结构控制:H3BO3对孔隙结构的影响

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Boric acid was used as a source of complexing agent to change phase separation kinetics and dynamics of the resin-glycol system to regulate the pore structure of porous carbon. The results show that the addition of H _(3) BO _(3) in the resin mixtures can change the polymerization dynamics during curing of resin-glycol mixtures. For the complexation of H _(3) BO _(3) to diols, the size of the ethylene glycol-rich phase produced during the curing of the resin mixture increase with the increase of the content of H _(3) BO _(3) . Similarly, the pore size of porous carbon after pyrolysis increases with the increase of H _(3) BO _(3) content. The average pore size of resulting porous carbon can be regulated in the range from 15 to 2754?nm. These results reveal that H _(3) BO _(3) exhibited obvious effects in changing the pore structure of resin-glycol system during pyrolysis.
机译:硼酸用作络合剂的源,以改变树脂 - 二醇系统的相分离动力学和动力学,以调节多孔碳的孔结构。结果表明,在树脂混合物中加入H _(3)BO _(3)可以在树脂 - 二醇混合物的固化过程中改变聚合动力学。对于H _(3)BO _(3)至二醇的络合,在树脂混合物的固化期间产生的富含乙二醇的相的尺寸随着H _(3)BO _( 3)。类似地,热解后多孔碳的孔径随H _(3)BO _(3)含量的增加而增加。所得到的多孔碳的平均孔径可以调节在15至2754μm的范围内。这些结果表明,H _(3)BO _(3)在热解期间在改变树脂 - 二醇系统的孔隙结构方面表现出明显的影响。

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