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Facilitating chemical and biochemical experiments with electronic microcontrollers and single-board computers

机译:用电子微控制器和单板计算机促进化学和生化实验

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Since the advent of modern science, researchers have had to rely on their technical skills or the support of specialized workshops to construct analytical instruments. The notion of the 'fourth industrial revolution' promotes construction of customized systems by individuals using widely available, inexpensive electronic modules. This protocol shows how chemists and biochemists can utilize a broad range of microcontroller boards (MCBs) and single-board computers (SBCs) to improve experimental designs and address scientific questions. We provide seven example procedures for laboratory routines that can be expedited by implementing this technology: (i) injection of microliter-volume liquid plugs into microscale capillaries for low-volume assays; (ii) transfer of liquid extract to a mass spectrometer; (iii) liquid-gas extraction of volatile organic compounds (called 'fizzy extraction'), followed by mass spectrometric detection; (iv) monitoring of experimental conditions over the Internet cloud in real time; (v) transfer of analytes to a mass spectrometer via a liquid microjunction interface, data acquisition, and data deposition into the Internet cloud; (vi) feedback control of a biochemical reaction; and (vii) optimization of sample flow rate in direct-infusion mass spectrometry. The protocol constitutes a primer for chemists and biochemists who would like to take advantage of MCBs and SBCs in daily experimentation. It is assumed that the readers have not attended any courses related to electronics or programming. Using the instructions provided in this protocol and the cited material, readers should be able to assemble simple systems to facilitate various procedures performed in chemical and biochemical laboratories in 1-2 d.
机译:自现代科学的出现以来,研究人员必须依靠他们的技术技能或专门研讨会的支持来构建分析仪器。 “第四届工业革命”的概念通过广泛可用的,廉价的电子模块促进了个人的施工。该协议显示了化学家和生物化学家可以利用广泛的微控制器板(MCB)和单板电脑(SBC)来改善实验设计和地址科学问题。我们提供了七个实验室惯例的例程,可以通过实施该技术来加速:(i)将微液量液体塞注射到用于低体积测定的微粒状毛细血管中; (ii)将液体提取物转移到质谱仪; (iii)挥发性有机化合物的液体 - 气体提取(称为'脱脂萃取'),其次是质谱检测; (iv)实时监测互联网云上的实验条件; (v)通过液体微型界面,数据采集和数据沉积在互联网云中转移分析物到质谱仪; (VI)反馈控制生化反应; (vii)直接输注质谱中的样品流速优化。该协议构成了用于在日常实验中利用MCB和SBC的化学家和生物化学家的底漆。假设读者没有参加任何与电子产品或编程相关的课程。使用本协议中提供的说明和引用的材料,读者应该能够组装简单的系统,以促进1-2天中化学和生化实验室中的各种程序。

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