Institute of Chemistry, University of Campinas, Campinas, SP, Brazil.
Methods Appl Fluoresc. 2017 Feb 10;5(1):014005. doi: 10.1088/2050-6120/aa5a81.
The stochastic dynamics of individual co-doped Er:Yb upconversion nanoparticles (UCNP) were investigated from experiments and simulations. The UCNP were characterized by high-resolution scanning electron microscopy, dynamic light scattering, and zeta potential measurements. Single UCNP measurements were performed by fluorescence upconversion micro-spectroscopy and optical trapping. The mean-square displacement (MSD) from single UCNP exhibited a time-dependent diffusion coefficient which was compared with Brownian dynamics simulations of a viscoelastic model of harmonically bound spheres. Experimental time-dependent two-dimensional trajectories of individual UCNP revealed correlated two-dimensional nanoparticle motion. The measurements were compared with stochastic trajectories calculated in the presence of a non-conservative rotational force field. Overall, the complex interplay of UCNP adhesion, thermal fluctuations and optical forces led to a rich stochastic behavior of these nanoparticles.
采用实验和模拟的方法研究了单个共掺杂铒-镱上转换纳米粒子(UCNP)的随机动力学。通过高分辨率扫描电子显微镜、动态光散射和zeta 电位测量对 UCNP 进行了表征。采用荧光上转换微光谱学和光阱对单个 UCNP 进行了测量。从单个 UCNP 获得的均方位移(MSD)表现出随时间变化的扩散系数,该系数与受谐和束缚球体的粘弹性模型的布朗动力学模拟进行了比较。单个 UCNP 的时变二维轨迹的实验揭示了相关的二维纳米颗粒运动。将测量结果与存在非保守旋转力场时计算的随机轨迹进行了比较。总体而言,UCNP 粘附、热涨落和光力的复杂相互作用导致了这些纳米颗粒丰富的随机行为。