Achilli Elisabetta, Minguzzi Alessandro, Visibile Alberto, Locatelli Cristina, Vertova Alberto, Naldoni Alberto, Rondinini Sandra, Auricchio Ferdinando, Marconi Stefania, Fracchia Martina, Ghigna Paolo
Dipartimento di Chimica, Università di Pavia, Via Taramelli 16, Pavia 27100, Italy.
Dipartimento di Chimica, Università degli Studi di Milano, Via Golgi 19, Milan 20133, Italy.
J Synchrotron Radiat. 2016 Mar;23(2):622-8. doi: 10.1107/S1600577515024480. Epub 2016 Feb 2.
Three-dimensional printed multi-purpose electrochemical devices for X-ray absorption spectroscopy are presented in this paper. The aim of this work is to show how three-dimensional printing can be a strategy for the creation of electrochemical cells for in situ and in operando experiments by means of synchrotron radiation. As a case study, the description of two cells which have been employed in experiments on photoanodes for photoelectrochemical water splitting are presented. The main advantages of these electrochemical devices are associated with their compactness and with the precision of the three-dimensional printing systems which allows details to be obtained that would otherwise be difficult. Thanks to these systems it was possible to combine synchrotron-based methods with complementary techniques in order to study the mechanism of the photoelectrocatalytic process.
本文介绍了用于X射线吸收光谱的三维打印多功能电化学装置。这项工作的目的是展示三维打印如何能够成为一种策略,用于创建通过同步辐射进行原位和操作实验的电化学电池。作为一个案例研究,介绍了在光电化学水分解光阳极实验中使用的两个电池的描述。这些电化学装置的主要优点与其紧凑性以及三维打印系统的精度相关,该精度允许获得否则难以获得的细节。由于这些系统,有可能将基于同步辐射的方法与互补技术相结合,以研究光电催化过程的机制。