用毛细管电泳监测石墨烯在聚(4-苯乙烯磺酸钠)水溶液中的分散

T. Takayanagi, Yuto Mizuta, Yuta Becchaku, H. Mizuguchi
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引用次数: 1

摘要

将石墨烯分散在以聚(4-苯乙烯磺酸钠)为分散剂的水溶液中。通过对聚(4-苯乙烯磺酸)离子(PSS)的吸附,石墨烯的电荷明显为负。检测了两种PSS:平均分子量分别为70000和1000000(分别为70000和1000000)。毛细管电泳用于评价明显阴离子石墨烯在水溶液中的分散性。在电泳图中检测到对应于分散的石墨烯的宽信号。在较高浓度的PSS 70000下,分散的石墨烯的有效电泳迁移率略大,表明PSS 70000的吸附量增加。即使在分离缓冲液不含有PSS时,仍然检测到阴离子石墨烯的宽信号。石墨烯的峰高和/或峰面积以及有效电泳迁移率在降低的施加电压下,即在较长的分离/检测时间下几乎没有降低。因此,PSS的吸附是不可逆的,或者PSS从石墨烯表面的解吸非常缓慢。因此,具有PSS的分散石墨烯将通过电泳分离而与基体PSS分离。
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Dispersion of Graphene in an Aqueous Solution with Poly(sodium 4-styrenesulfonate) Monitored by Capillary Electrophoresis
Graphene was dispersed in an aqueous solution with poly(sodium 4-styrenesulfonate) as a dispersant. The charge of the graphene came to be apparently negative by the adsorption of poly(4-styrenesulfonate) ion (PSS). Two kinds of PSS were examined: the average molecular masses of 70,000 and 1,000,000 (PSS 70,000 and PSS 1,000,000, respectively). Capillary electrophoresis was used to evaluate the dispersion of the apparently anionic graphene in an aqueous solution. A broad signal corresponding to the dispersed graphene was detected in the electropherograms. The effective electrophoretic mobility of the dispersed graphene was somewhat larger at higher concentrations of PSS 70,000, suggesting that the adsorbed amount of PSS 70,000 increased. Even when the separation buffer did not contain PSS, the broad signal of the anionic graphene was still detected. The peak height and/or the peak area, as well as the effective electrophoretic mobility of the graphene decreased little at the reduced applied voltages, i.e., at longer separation/detection time. Therefore, the adsorption of PSS is irreversible or the desorption of PSS from the graphene surface is very slow. Accordingly, the dispersed graphene with PSS would be separated from the matrix PSS by the electrophoretic separation.
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