Department of Bioengineering, University of Washington, Seattle WA 98195, USA.
J Biophotonics. 2011 Mar;4(3):172-7. doi: 10.1002/jbio.201000097. Epub 2010 Nov 12.
Earlier work on particles in aqueous solution indicated that particle hydration could be expanded by incident light. To assess the effects of expanded hydration we measured Brownian displacements of microspheres exposed to light of varying intensities and wavelengths. Displacements were consistently diminished in an intensity-dependent and wavelength-dependent fashion, and center-to-center distances between microspheres were shifted to higher values. We conclude that suspended microspheres are surrounded by hydration zones substantial enough to impact Brownian displacements.
早期关于水溶液中粒子的研究表明,入射光可以使粒子水合作用扩大。为了评估水合作用扩大的效果,我们测量了暴露于不同强度和波长光下的微球的布朗位移。位移以强度和波长依赖的方式一致减小,并且微球之间的中心到中心距离被转移到更高的值。我们的结论是,悬浮的微球被足够大的水合区包围,从而影响布朗位移。