Willets Katherine A, Nishimura Stefanie Y, Schuck P James, Twieg Robert J, Moerner W E
Department of Chemistry, Stanford University, Stanford, California 94305, and Department of Chemistry, Kent State University, Kent, Ohio 44242, USA.
Acc Chem Res. 2005 Jul;38(7):549-56. doi: 10.1021/ar0401294.
Fluorescence imaging of single molecules at room temperature is a powerful technique for studying complex condensed phase systems and revealing structure and dynamics hidden by ensemble measurements. Successful single-molecule spectroscopic experiments rely upon strong emitters that can be detected at the level of individual copies above the relevant background signals. This Account discusses a class of nonlinear optical chromophores that not only are well-suited for single-molecule imaging but also offer additional beneficial properties such as a significant ground-state dipole moment, moderate hyperpolarizability, and sensitivity to local environment. An overview of the photophysical properties of several members of this class of molecules as well as a mechanism to help understand the environmental sensitivity is presented. Some preliminary applications of the chromophores as single-molecule reporters in cellular and polymer systems are discussed, along with detection of the emitters by two-photon fluorescence.
室温下单分子的荧光成像技术,是研究复杂凝聚相体系以及揭示系综测量所掩盖的结构与动力学的有力手段。成功的单分子光谱实验依赖于强发射体,这类发射体能够在高于相关背景信号的单分子水平上被检测到。本综述讨论了一类非线性光学发色团,这类发色团不仅非常适合单分子成像,而且还具有其他有益特性,如显著的基态偶极矩、适度的超极化率以及对局部环境的敏感性。本文概述了这类分子中几个成员的光物理性质,并提出了一种有助于理解环境敏感性的机制。文中还讨论了这些发色团作为细胞和聚合物体系中单分子报告分子的一些初步应用,以及通过双光子荧光检测发射体的情况。