首页> 外文期刊>Analytical chemistry >LATERAL DIFFUSION OF MOLECULES PARTITIONED INTO SILICA-BOUND ALKYL CHAINS - INFLUENCE OF CHAIN LENGTH AND BONDING DENSITY
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LATERAL DIFFUSION OF MOLECULES PARTITIONED INTO SILICA-BOUND ALKYL CHAINS - INFLUENCE OF CHAIN LENGTH AND BONDING DENSITY

机译:划分为硅键烷基链的分子的横向扩散-链长和键合密度的影响

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摘要

Lateral diffusion of a hydrophobic fluorescent molecule partitioned into monomeric alkyl chains bound to a planar silica substrate was measured as a function of chain density and chain length. Measurement of fluorescence recovery after patterned photobleaching was used to observe the diffusional relaxation of a concentration profile of probe molecules over distances of micrometers. The diffusion rate of the probe molecule partitioned into C-18 chains decreased with decreasing chain coverage. As the chain length was reduced from C-18 to C-8 and C-4, the rate of diffusion also decreased. These results, when combined with results from a previous study of the effect of overlaying solvent on diffusion rate (Hansen, R. L.; Harris, J. M. Anal. Chem. 1995, 67, 492-498), are consistent with a domain model for long-range transport of partitioned molecules through the bound ligands. Fluorescence recovery experiments in which diffusion is monitored over a distance of micrometers offer a unique means to probe long-range structure of surface-immobilized alkyl chains.
机译:根据链密度和链长的函数,测量了疏水荧光分子的横向扩散,该分子被分成与平面二氧化硅基质结合的单体烷基链。在图案化的光漂白之后测量荧光恢复,以观察探针分子的浓度分布在微米距离上的扩散弛豫。划分为C-18链的探针分子的扩散速率随链覆盖率的降低而降低。随着链长从C-18减少到C-8和C-4,扩散速率也降低了。这些结果与先前关于覆盖溶剂对扩散速率的影响的研究结果结合使用时(Hansen,RL; Harris,JM Anal。Chem。1995,67,492-498),与长效域模型相符。分配分子通过结合的配体的远距离迁移。荧光恢复实验中的扩散在微米的距离内进行监控,提供了一种独特的手段来探测表面固定的烷基链的长距离结构。

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