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电位传感器设计中的3D打印:技术、材料与应用综述

3D Printing in the Design of Potentiometric Sensors: A Review of Techniques, Materials, and Applications.

作者信息

Zalewska Aleksandra, Lenar Nikola, Paczosa-Bator Beata

机构信息

Faculty of Materials Science and Ceramics, AGH University of Krakow, Mickiewicza 30, PL-30059 Krakow, Poland.

出版信息

Sensors (Basel). 2025 Aug 12;25(16):4986. doi: 10.3390/s25164986.

Abstract

The integration of 3D printing into the development of potentiometric sensors has revolutionized sensor fabrication by enabling customizable, low-cost, and rapid prototyping of analytical devices. Techniques like fused deposition modeling (FDM) and stereolithography (SLA) allow researchers to produce different sensor parts, such as electrode housings, solid contacts, reference electrodes, and even microfluidic systems. This review explains the basic principles of potentiometric sensors and shows how 3D printing helps solve problems faced in traditional sensor manufacturing. Benefits include smaller size, flexible shapes, the use of different materials in one print, and quick production of working prototypes. However, some challenges still exist-like differences between prints, limited chemical resistance of some materials, and the long-term stability of sensors in real-world conditions. This paper overviews recent examples of 3D-printed ion-selective electrodes and related components and discusses new ideas to improve their performance. It also points to future directions, such as better materials and combining different manufacturing methods. Overall, 3D printing is a powerful and growing tool for developing the next generation of potentiometric sensors for use in healthcare, environmental monitoring, and industry.

摘要

将3D打印技术融入电位传感器的开发,通过实现分析设备的定制化、低成本和快速原型制作,彻底改变了传感器制造方式。诸如熔融沉积建模(FDM)和立体光刻(SLA)等技术使研究人员能够制造不同的传感器部件,如电极外壳、固体触点、参比电极,甚至微流体系统。本综述解释了电位传感器的基本原理,并展示了3D打印如何帮助解决传统传感器制造中面临的问题。其优点包括尺寸更小、形状灵活、在一次打印中使用不同材料以及快速生产工作原型。然而,仍然存在一些挑战,例如打印之间的差异、某些材料的耐化学性有限以及传感器在实际条件下的长期稳定性。本文概述了3D打印离子选择性电极及相关组件的近期实例,并讨论了提高其性能的新想法。它还指出了未来的发展方向,如更好的材料以及不同制造方法的结合。总体而言,3D打印是开发用于医疗保健、环境监测和工业的下一代电位传感器的一种强大且不断发展的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5e7/12390291/7e19ff57c0c2/sensors-25-04986-g001.jpg

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