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用于传感和成像的发光金表面:过渡金属探针的图案化。

Luminescent gold surfaces for sensing and imaging: patterning of transition metal probes.

机构信息

School of Chemistry, University of Birmingham , Edgbaston, Birmingham, West Midlands B15 2TT, United Kingdom.

出版信息

ACS Appl Mater Interfaces. 2014 Jul 23;6(14):11598-608. doi: 10.1021/am502347c. Epub 2014 Jun 30.

Abstract

Luminescent transition metal complexes are introduced for the microcontact printing of optoelectronic devices. Novel ruthenium(II), RubpySS, osmium(II), OsbpySS, and cyclometalated iridium(III), IrbpySS, bipyridyl complexes with long spacers between the surface-active groups and the metal were developed to reduce the distance-dependent, nonradiative quenching pathways by the gold surface. Indeed, surface-immobilized RubpySS and IrbpySS display strong red and green luminescence, respectively, on planar gold surfaces with luminescence lifetimes of 210 ns (RubpySS·Au) and 130 and 12 ns (83%, 17%) (IrbpySS·Au). The modified surfaces show enhancement of their luminescence lifetime in comparison with solutions of the respective metal complexes, supporting the strong luminescence signal observed and introducing them as ideal inorganic probes for imaging applications. Through the technique of microcontact printing, complexes were assembled in patterns defined by the stamp. Images of the red and green patterns rendered by the RubpySS·Au and IrbpySS·Au monolayers were revealed by luminescence microscopy studies. The potential of the luminescent surfaces to respond to biomolecular recognition events is demonstrated by addition of the dominant blood-pool protein, bovine serum albumin (BSA). Upon treatment of the surface with a BSA solution, the RubpySS·Au and IrbpySS·Au monolayers display a large luminescence signal increase, which can be quantified by time-resolved measurements. The interaction of BSA was also demonstrated by surface plasmon resonance (SPR) studies of the surfaces and in solution by circular dichroism spectroscopy (CD). Overall, the assembly of arrays of designed coordination complexes using a simple and direct μ-contact printing method is demonstrated in this study and represents a general route toward the manufacture of micropatterned optoelectronic devices designed for sensing applications.

摘要

将发光过渡金属配合物引入到光电设备的微接触印刷中。设计了新型钌(II)、RubpySS、锇(II)、OsbpySS 和环金属化铱(III)、IrbpySS 等具有长间隔基的联吡啶配合物,以减少因金表面而产生的与距离相关的非辐射猝灭途径。实际上,RubpySS 和 IrbpySS 分别在平面金表面上的表面固定化后显示出强的红色和绿色发光,其荧光寿命分别为 210 ns(RubpySS·Au)和 130 和 12 ns(83%、17%)(IrbpySS·Au)。与相应金属配合物的溶液相比,修饰表面的荧光寿命得到增强,这支持了观察到的强发光信号,并将其作为成像应用的理想无机探针引入。通过微接触印刷技术,将配合物组装成由印章定义的图案中。RubpySS·Au 和 IrbpySS·Au 单层的红色和绿色图案的图像通过荧光显微镜研究得以揭示。通过添加主要的血池蛋白牛血清白蛋白(BSA),证明了发光表面对生物分子识别事件的响应能力。在表面用 BSA 溶液处理后,RubpySS·Au 和 IrbpySS·Au 单层显示出较大的荧光信号增加,这可以通过时间分辨测量进行定量。BSA 的相互作用还通过表面等离子体共振(SPR)研究和溶液中的圆二色性光谱(CD)进行了证明。总体而言,本研究证明了使用简单直接的μ接触印刷方法组装设计的配位配合物阵列,并代表了用于传感应用的微图案光电设备制造的一般途径。

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