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首页> 外文期刊>Advanced Sustainable Systems >Fabricating Bioactive 3D Metal-Organic Framework Devices
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Fabricating Bioactive 3D Metal-Organic Framework Devices

机译:制作3 d生物活性有机框架设备

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摘要

Transforming the future capability to protect and restore vulnerable environments hinges on the ability to monitor them in real-time with ever-increasing sensitivity. Combining the precision and proficiency of biomolecules to signal the presence of low-level toxins is key to developing water system monitoring that enables fast detection and remediation of pollution. Here, a 3D flow sensor is developed incorporating enzymes which can signal the presence of organic toxins from water systems over extended periods of time. The enzymes are encapsulated in a porous, crystalline metal-organic framework (MOF) cage, providing protection and stability. The inline flow device features a cutting-edge 3D-printed design to maximize flow and interfacial interactions between the encapsulated organophosphate degrading enzyme (OpdA) and the organophosphate based pollutants. The OpdA produces a yellow product on decomposition of the pollution that signals its presence. The porous protective MOF coating is key to this technology, structurally securing the enzyme while allowing the flow of reactant and thus the continuous breakdown of organic pollution over several days.
机译:保护和改变未来的能力恢复脆弱的环境取决于在实时监控它们的能力不断增加的敏感性。精度和生物分子的能力信号的存在低级的毒素是关键发展,使水系统监控快速检测和修复的污染。在这里,一个3 d流量传感器是将开发酶信号有机的存在毒素长期从水系统的时间。多孔,水晶有机框架(MOF)笼子里,提供保护和稳定。内联流设备特性尖端3 d打印的设计流和最大化封装之间的界面相互作用有机磷降解酶(OpdA)和基于有机磷污染物。产生一个黄色的分解产物它的存在污染信号。保护MOF涂层是这项技术的关键,结构保护酶,同时允许反应物的流动,因此连续分解的有机污染超过几天。

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