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Ultra-fast responsive colloidal–polymer composite-based volatile organic compounds (VOC) sensor using nanoscale easy tear process

机译:采用纳米级易撕工艺的超快速响应胶体-聚合物复合物挥发性有机化合物(VOC)传感器

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摘要

There is an immense need for developing a simple, rapid, and inexpensive detection assay for health-care applications or monitoring environments. To address this need, a photonic crystal (PC)-based sensor has been extensively studied due to its numerous advantages such as colorimetric measurement, high sensitivity, and low cost. However, the response time of a typical PC-based sensor is relatively slow due to the presence of the inevitable upper residual layer in colloidal structures. Hence, we propose an ultra-fast responsive PC-based volatile organic compound (VOC) sensor by using a “nanoscale easy tear (NET) process” inspired by commercially available “easy tear package”. A colloidal crystal-polydimethylsiloxane (PDMS) composite can be successfully realized through nanoscale tear propagation along the interface between the outer surface of crystallized nanoparticles and bulk PDMS. The response time for VOC detection exhibits a significant decrease by allowing the direct contact with VOCs, because of perfect removal of the residual on the colloidal crystals. Moreover, vapor-phase VOCs can be monitored, which had been previously impossible. High-throughput production of the patterned colloidal crystal–polymer composite through the NET process can be applied to other multiplexed selective sensing applications or may be used for nanomolding templates.
机译:迫切需要为卫生保健应用或监测环境开发一种简单,快速且便宜的检测方法。为了满足这一需求,基于光子晶体(PC)的传感器因其众多优势(例如比色测量,高灵敏度和低成本)而得到了广泛研究。但是,由于在胶体结构中不可避免存在上残留层,典型的基于PC的传感器的响应时间相对较慢。因此,我们提出了一种超快速响应的基于PC的挥发性有机化合物(VOC)传感器,该传感器使用的是受市售“易撕包装”启发的“纳米易撕(NET)工艺”。胶体晶体-聚二甲基硅氧烷(PDMS)复合材料可以通过沿着结晶纳米颗粒外表面与本体PDMS之间的界面的纳米级撕裂扩展而成功实现。由于可以完全清除胶体晶体上的残留物,因此通过直接与VOC接触,VOC检测的响应时间显着缩短。此外,可以监测气相VOC,这以前是不可能的。通过NET工艺高产量生产带图案的胶体晶体-聚合物复合材料,可以应用于其他多重选择性传感应用,也可以用于纳米成型模板。

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