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Cucurbit[7]uril Disrupts Aggregate Formation Between Rhodamine B Dyes Covalently Attached to Glass Substrates

机译:葫芦[7]脲干扰共价附着在玻璃基板上的若丹明B染料之间的聚集体形成

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摘要

Dye aggregation is detrimental to the performance of high optical density dye-doped photonic materials. To overcome this challenge, the ability of cucurbit[7]uril (CB7) as a molecular host to disrupt aggregate formation on glass substrates was examined. Rhodamine B was covalently attached to glass slides by initially coating the surface with azidohexylsiloxane followed by copper-catalyzed “click” triazole formation with rhodamine B propargyl ester. The absorption and emission spectra of rhodamine B coated slides in water indicated diverse heterogeneous properties as surface dye density varied. Fluorescence quenching due to dye aggregation was evident at high surface dye density. Addition of aqueous cucurbit[7]uril (CB7) to the surface-tethered dyes perturbed the spectra to reveal a considerable reduction in heterogeneity, which suggested that the presence of a surface in close proximity does not significantly impair CB7’s ability to complex with tethered rhodamine B.
机译:染料聚集对高光密度染料掺杂的光子材料的性能有害。为了克服这一挑战,研究了葫芦[7]尿素(CB7)作为分子宿主破坏玻璃基板上聚集体形成的能力。罗丹明B通过首先用叠氮己基硅氧烷涂覆表面,然后用罗丹明B炔丙基酯在铜催化的“咔哒”三唑形成上共价附着于载玻片上。若丹明B涂层载玻片在水中的吸收和发射光谱表明,随着表面染料密度的变化,其具有多种异质性。在高表面染料密度下,由于染料聚集而导致的荧光猝灭是显而易见的。在表面束缚的染料中加入水葫芦[7]尿素(CB7)会扰乱光谱,显示出异质性的显着降低,这表明紧密相邻的表面的存在不会显着削弱CB7与束缚的罗丹明络合的能力。 B.

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    《Journal of Fluorescence》 |2011年第4期|p.1467-1478|共12页
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