首页> 外文期刊>Analytical and Bioanalytical Chemistry >New luminescent oxygen-sensing and temperature-sensing materials based on gadolinium(III) and europium(III) complexes embedded in an acridone–polystyrene conjugate
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New luminescent oxygen-sensing and temperature-sensing materials based on gadolinium(III) and europium(III) complexes embedded in an acridone–polystyrene conjugate

机译:基于嵌入(啶酮-聚苯乙烯共轭物中的g(III)和euro(III)配合物的新型发光氧感和温度感测材料

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摘要

New sensing materials have been developed which rely on the use of luminescent europium(III) and gadolinium(III) complexes with thenoylacetylacetonate embedded in an acridone–polystyrene conjugate. Acridone acts as an antenna which efficiently absorbs violet light. Covalent coupling to the polystyrene backbone prevents aggregation and enables very high antenna loading (16 % w/w). Energy transfer from the antenna to the lanthanide complexes results in efficient red luminescence from the Eu(III) complex or green phosphorescence originating from the Gd(III) chelate. The luminescence of the material based on the Eu(III) complex is only slightly affected by oxygen but is highly sensitive to temperature under physiological conditions (20–40 °C). The Gd(III) complex has long phosphorescence decay times of approximately 1 ms and high sensitivity to oxygen. Ultra-thin (250 nm) sensing layers with sufficient absorption at the excitation wavelength enable monitoring of rapid oxygen changes virtually in real time. Immobilization of both complexes in a single matrix results in a dual-luminescence material with emissions almost ideally matching the red and green channels of a digital camera. Thus, oxygen imaging using a very simple and inexpensive set-up can be realized. Additionally, the material can be used for simultaneous sensing of oxygen and temperature.
机译:已经开发出了新的传感材料,这些材料依赖于发光euro(III)和g(III)配合物以及嵌入在the啶酮-聚苯乙烯共轭物中的壬基乙酰丙酮酸酯。 rid啶酮充当有效吸收紫光的天线。共价偶联至聚苯乙烯主链可防止聚集,并使天线负载非常高(16%w / w)。从天线到镧系元素络合物的能量转移导致Eu(III)络合物的有效红色发光或源自Gd(III)螯合物的绿色磷光。基于Eu(III)配合物的材料的发光仅受到氧气的轻微影响,但在生理条件(20–40°C)下对温度高度敏感。 Gd(III)配合物的磷光衰变时间长,约为1毫秒,对氧气的敏感性高。在激发波长处具有足够吸收的超薄(250 nm)传感层几乎可以实时监测氧气的快速变化。将两种复合物固定在单个基质中会产生双发光材料,其发射几乎理想地匹配数码相机的红色和绿色通道。因此,可以实现使用非常简单且廉价的设置的氧成像。另外,该材料可用于同时感测氧气和温度。

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