Krishnaswamy Rema, Majumdar Sayantan, Ganapathy Rajesh, Agarwal Ved Varun, Sood A K, Rao C N R
Department of Physics, Indian Institute of Science, Bangalore 560012, India.
Langmuir. 2007 Mar 13;23(6):3084-7. doi: 10.1021/la063236a. Epub 2007 Feb 15.
We report the interfacial properties of monolayers of Ag nanoparticles 10-50 nm in diameter formed at the toluene-water interface under steady as well as oscillatory shear. Strain amplitude sweep measurements carried out on the film reveal a shear thickening peak in the loss moduli (G") at large amplitudes followed by a power law decay of the storage (G') and loss moduli with exponents in the ratio 2:1. In the frequency sweep measurements at low frequencies, the storage modulus remains nearly independent of the angular frequency, whereas G" reveals a power law dependence with a negative slope, a behavior reminiscent of soft glassy systems. Under steady shear, a finite yield stress is observed in the limit of shear rate .gamma going to zero. However, for .gamma > 1 s-1, the shear stress increases gradually. In addition, a significant deviation from the Cox-Merz rule confirms that the monolayer of Ag nanoparticles at the toluene-water interface forms a soft two-dimensional colloidal glass.
我们报告了在甲苯 - 水界面形成的直径为10 - 50 nm的银纳米颗粒单层在稳态和振荡剪切下的界面性质。对该薄膜进行的应变幅度扫描测量显示,在大振幅下损耗模量(G")出现剪切增稠峰值,随后储能模量(G')和损耗模量呈幂律衰减,指数之比为2:1。在低频频率扫描测量中,储能模量几乎与角频率无关,而G"显示出具有负斜率的幂律依赖性,这种行为让人联想到软玻璃态系统。在稳态剪切下,在剪切速率γ趋于零的极限情况下观察到有限的屈服应力。然而,对于γ > 1 s-1,剪切应力逐渐增加。此外,与Cox-Merz规则的显著偏差证实了甲苯 - 水界面处的银纳米颗粒单层形成了软二维胶体玻璃。