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Integrated 3D-printed reactionware for chemical synthesis and analysis

机译:集成的3D打印反应软件,用于化学合成和分析

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Three-dimensional (3D) printing has the potential to transform science and technology by creating bespoke, low-cost appliances that previously required dedicated facilities to make. An attractive, but unexplored, application is to use a 3D printer to initiate chemical reactions by printing the reagents directly into a 3D reactionware matrix, and so put reactionware design, construction and operation under digital control. Here, using a low-cost 3D printer and open-source design software we produced reactionware for organic and inorganic synthesis, which included printed-in catalysts and other architectures with printed-in components for electrochemical and spectroscopic analysis. This enabled reactions to be monitored in situ so that different reactionware architectures could be screened for their efficacy for a given process, with a digital feedback mechanism for device optimization. Furthermore, solely by modifying reactionware architecture, reaction outcomes can be altered. Taken together, this approach constitutes a relatively cheap, automated and reconfigurable chemical discovery platform that makes techniques from chemical engineering accessible to typical synthetic laboratories.
机译:三维(3D)打印具有潜力,可以通过制造定制的低成本设备来改变科学技术,这些设备以前需要专用的设备才能制造。一个有吸引力的但尚未开发的应用是使用3D打印机通过将试剂直接打印到3D反应器矩阵中来启动化学反应,然后将反应器的设计,构建和操作置于数字控制下。在这里,我们使用低成本的3D打印机和开放源代码设计软件,生产了用于有机和无机合成的反应软件,其中包括印制的催化剂以及带有印制成分的其他体系结构,用于电化学和光谱分析。这样就可以对反应进行原位监测,从而可以通过用于设备优化的数字反馈机制来筛选不同反应软件体系结构对于给定过程的功效。此外,仅通过修改反应器体系结构,即可更改反应结果。综上所述,这种方法构成了一个相对便宜,自动化和可重新配置的化学发现平台,该平台使典型合成实验室可以使用化学工程技术。

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