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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Gas-Solid Coexistence in Highly Charged Colloidal Suspensions
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Gas-Solid Coexistence in Highly Charged Colloidal Suspensions

机译:高电荷胶体悬浮液中的气固共存

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摘要

Aqueous suspensions of highly charged polystyrene particles with different volume fractions have been investigated for structural ordering and phase behavior using static light scattering (SLS) and confocal laser scanning microscope (CLSM). Under deionized conditions, suspensions of high-charge-density colloidal particles remained disordered whereas suspensions of relatively low charge density showed crystallization by exhibiting iridescence for the visible light. Though for the unaided eye crystallized suspensions appeared homogeneous, SLS measurements and CLSM observations have revealed their inhomogeneous nature in the form of the coexistence of voids with dense ordered regions. CLSM investigations on disordered suspensions showed their inhomogeneous nature in the form coexistence of voids with dense disordered (amorphous) regions. Our studies on highly charged colloids confirm the occurrence of gas-solid transition and are in accordance with predictions of Monte Carlo simulations using a pair-potential having a long-range attractive term [Mohanty, P. S.; Tata, B. V. R. J. Colloid Interface Sci. 2003,264,101]. On the basis of our experimental and simulation results, we argue that the reported reentrant disordered state [Yamanaka et al. Phys. Rev. Lett. 1998, 80, 5806 and Toyotama et al. Langmuir 2003, 19, 3236] in charged colloids observed at high charge densities is a gas-solid coexistence state.
机译:已经使用静态光散射(SLS)和共聚焦激光扫描显微镜(CLSM)研究了具有不同体积分数的高电荷聚苯乙烯颗粒的水悬浮液的结构有序性和相行为。在去离子条件下,高电荷密度胶体颗粒的悬浮液保持无序,而相对低电荷密度的悬浮液则通过对可见光呈虹彩表现出结晶。尽管对于裸眼而言,结晶的悬浮液似乎是均匀的,但SLS测量和CLSM观测已显示出它们的不均匀性,即空隙与致密有序区域并存。 CLSM对无序悬浮液的研究表明,它们以不均匀的形式存在,即空洞与致密无序(无定形)区域并存。我们对高电荷胶体的研究证实了气固转变的发生,并且与使用具有长距离吸引力项的对势的蒙特卡罗模拟的预测一致[Mohanty,P. S .; Tata,B.V.R.J。胶体界面科学。 2003,264,101]。根据我们的实验和模拟结果,我们认为报告的折返无序状态[Yamanaka等。物理牧师1998,80,5806和Toyotama等。 Langmuir 2003,19,3236]在高电荷密度下观察到的带电胶体是气固共存状态。

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