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UV-patternable nanocomposite containing CdSe and PbS quantum dots as miniaturized luminescent chemo-sensors

机译:包含CdSe和PbS量子点的可紫外图案化的纳米复合材料,作为微型发光化学传感器

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In this study, a novel multifunctional hybrid polymer-based luminescent material, particularly formulated for photolithography, was developed, fabricated and tested as a miniaturized chemosensor. This nanocomposites were formulated with either luminescent CdSe (for the visible) or PbS (for the near-IR) colloidal QDs embedded in a polyisoprene-based photoresist (PIP). We checked the sensing capability of the nanocomposite by exposing 1 cm(2) CdSe nanocomposite patterns to vapours of some analyte solutions such as 2-mercaptoethanol (MET) and ethylenediamine (EDA). The transduction mechanism of the sensor is based on changes of the QD photoluminescence (PL) when molecules are adsorbed on the QD surface. Because the polymer used suffered from swelling during the developmental step of the sensor fabrication, the diffusion of the analytes through the matrix was rather high. As a result, the sensor response to the analyte-QD interactions was considerably short and sensitive. We observed shorter sensor response times for MET than EDA. Moreover, we found a limit of detection of MET and EDA of 0.1 pg and 15 ng, respectively. The linear detection range for MET and EDA was determined to be over an analyte concentration of 6 and 5 orders of magnitude, respectively. We also tested the PbS-based nanocomposite response to MET and EDA and found very different responses. Although EDA quenched the PbS PL, exposure to MET molecules resulted in a 6.5-fold enhancement of the PL. The mechanisms of the observed effects are discussed in detail.
机译:在这项研究中,开发,制造和测试了一种新型的多功能混合聚合物基发光材料,特别是为光刻而配制的,并作为小型化学传感器进行了测试。该纳米复合材料是用嵌入聚异戊二烯基光刻胶(PIP)中的发光CdSe(对于可见光)或PbS(对于近红外)胶体QD配制的。我们通过将1 cm(2)CdSe纳米复合材料图案暴露于某些分析物溶液的蒸气(例如2-巯基乙醇(MET)和乙二胺(EDA))中,检查了纳米复合材料的传感能力。传感器的转导机制基于分子吸附在QD表面上时QD光致发光(PL)的变化。由于所用的聚合物在传感器制造的开发步骤中会发生溶胀,因此分析物通过基质的扩散相当高。结果,传感器对分析物-QD相互作用的响应非常短且灵敏。我们观察到,MET的传感器响应时间比EDA短。此外,我们发现MET和EDA的检出限分别为0.1 pg和15 ng。 MET和EDA的线性检测范围分别确定为超过6个和5个数量级的分析物浓度。我们还测试了对MET和EDA的基于PbS的纳米复合材料的响应,发现非常不同的响应。尽管EDA淬灭了PbS PL,但暴露于MET分子导致PL增强了6.5倍。详细讨论了观察到的效果的机制。

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