Institut für Umwelt & Energie, Technik & Analytik e. V. (IUTA), Bliersheimer Str. 58-60, Duisburg 47229, Germany; Instrumental Analytical Chemistry, University of Duisburg-Essen, Universitätsstr. 5, Essen 45141, Germany.
Institut für Umwelt & Energie, Technik & Analytik e. V. (IUTA), Bliersheimer Str. 58-60, Duisburg 47229, Germany.
J Chromatogr A. 2024 Nov 8;1736:465343. doi: 10.1016/j.chroma.2024.465343. Epub 2024 Sep 16.
Driven by demographic changes and dwindling Science Technology Engineering Mathematics enrolments, our research introduces no-code automation as a strategic response, aimed at mitigating labor shortages while enhancing productivity and safety in the laboratory environment. Employing a user-friendly, no-code software platform, we automated a complex HPTLC assay, enabling laboratory personnel to configure and modify workflows without requiring specialized programming skills. The manuscript outlines the deployment of a collaborative robot (cobot), a programmable logic controller (PLC), and the utilization of self-developed open-source hardware components to establish automated stations for sample handling, incubation, spraying, detection, and storage within the assay process. The research addresses challenges such as the handling of fragile HPTLC plates and the seamless integration of automated stations, solved through innovative design solutions and adaptive programming methods. This investigation demonstrates the feasibility and efficiency of no-code automation in overcoming skilled labor deficits.
受人口结构变化和科学、技术、工程、数学(Science Technology Engineering Mathematics,简称 STEM)入学人数减少的驱动,我们的研究引入了无代码自动化作为一种战略应对措施,旨在缓解劳动力短缺的同时提高实验室环境中的生产力和安全性。我们使用用户友好的无代码软件平台,实现了一项复杂的高效薄层色谱(HPTLC)分析的自动化,使实验室人员能够配置和修改工作流程,而无需专门的编程技能。本文概述了协作机器人(cobot)、可编程逻辑控制器(PLC)的部署,以及利用自行开发的开源硬件组件在分析过程中建立用于样品处理、孵育、喷雾、检测和存储的自动化站。该研究解决了处理易碎 HPTLC 板和自动化站无缝集成等挑战,这些问题通过创新的设计解决方案和自适应编程方法得到解决。本研究证明了无代码自动化在克服熟练劳动力短缺方面的可行性和效率。