Bartelmess Juergen, Zimmek David, Bartholmai Matthias, Strangfeld Christoph, Schäferling Michael
Federal Institute of Materials Research and Testing (BAM), Division 1.9 - Chemical and Optical Sensing, Richard-Willstaedter-Str. 11, 12489 Berlin, Germany.
Analyst. 2020 Mar 21;145(6):2111-2117. doi: 10.1039/c9an02348h. Epub 2020 Feb 4.
In this communication a novel concept for pH sensing is introduced which is specifically adapted to monitor carbonation induced corrosion in concrete structures. The method is based on a ratiometric measurement principle, exploiting the pH sensitive colour switching of thymol blue in the basic pH regime and the emissive properties of two different (Zn)CdSe/ZnS core shell quantum dots. The transition point of thymol blue in a Hydrogel D4 matrix was determined to be at around pH 11.6, which fits ideally to the intended application. Next to the fundamental spectroscopic characterization of the ratiometric response, a new design for a sensor head, suitable for the incorporation into concrete matrices is presented. Toward this, a manufacturing process was developed which includes the preparation of a double layer of polymers containing either thymol blue or a quantum dot mixture inside a porous ceramic tube. Results of a proof-of-priciple performance test of the sensor head in solutions of different pH and in cement specimens are presented, with encouraging results paving the way for future field tests in concrete.
在本通讯中,介绍了一种用于pH传感的新颖概念,该概念特别适用于监测混凝土结构中碳化引起的腐蚀。该方法基于比例测量原理,利用百里酚蓝在碱性pH范围内的pH敏感颜色转换以及两种不同的(Zn)CdSe/ZnS核壳量子点的发光特性。确定了百里酚蓝在水凝胶D4基质中的转变点约为pH 11.6,这非常适合预期的应用。除了对比例响应进行基本的光谱表征外,还提出了一种适用于掺入混凝土基质的传感器头的新设计。为此,开发了一种制造工艺,该工艺包括在多孔陶瓷管内制备包含百里酚蓝或量子点混合物的聚合物双层。展示了传感器头在不同pH值溶液和水泥试件中的原理验证性能测试结果,令人鼓舞的结果为未来在混凝土中的现场测试铺平了道路。