首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Charging behavior of carbon black in a low-permittivity medium based on acid-base charging theory
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Charging behavior of carbon black in a low-permittivity medium based on acid-base charging theory

机译:基于酸碱充电理论的炭黑在低介电常数介质中的充电行为

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摘要

This work presents an investigation of the charging behavior of carbon black (CB) particles dispersed in a low-permittivity medium Isopar L. Highly charged and stably dispersed CB particles in Isopar L were prepared by employing a nonionic surfactant polyisobutylene-mono-succinimide (T151) with basic functionality to treat CB with acidic functionality (oxidized with concentrated nitric acid). As expected, CB particles were successfully negatively charged and presented a remarkably high electrophoretic mobility of -11.56 x 10 (10) m(2) V (1) s (1) and a zeta potential of -180.3 mV at the T151 concentration of 2.0 wt%, which are the highest values for CB in nonpolar media reported by far. The dispersion stability of CB particles, dominated by the particle charge, was dramatically improved with T151 concentrations increased in the range from 1.0 to 5.0 wt%. Prototype electrophoretic display device based on 2.0 wt% T151 treated CB particles exhibited highly improved performance compared to that of device using pristine CB particles. The high charge density and excellent dispersibility in apolar solvents of CB nanoparticles imply their potential applications in other electronic fields, such as electrically conductive inks for various printed electronics and conductive materials for various sensors.
机译:这项工作对分散在低介电常数介质Isopar L中的炭黑(CB)颗粒的带电行为进行了研究。通过使用非离子表面活性剂聚异丁烯-单琥珀酰亚胺(T151)制备在Isopar L中高电荷且稳定分散的CB颗粒)具有碱性功能,可处理具有酸性功能(被浓硝酸氧化)的CB。正如预期的那样,CB粒子成功带负电,在T151浓度为2.0时,电泳迁移率极高,为-11.56 x 10(10)m(2)V(1)s(1),ζ电势为-180.3 mV。 wt%,这是迄今为止报道的非极性介质中CB的最高值。随着T151浓度在1.0到5.0 wt%的范围内增加,以颗粒电荷为主的CB颗粒的分散稳定性得到了显着改善。与使用原始CB颗粒的设备相比,基于2.0 wt%T151处理过的CB颗粒的原型电泳显示设备表现出更高的性能。 CB纳米粒子在非极性溶剂中的高电荷密度和出色的分散性意味着它们在其他电子领域的潜在应用,例如用于各种印刷电子产品的导电油墨和用于各种传感器的导电材料。

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