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Design and Development of Instrumentations for the Preparation of Platinum Single Crystals for Electrochemistry and Electrocatalysis Research. Part 2: Orientation, Cutting, and Annealing

机译:电化学和电催化研究铂单晶制备仪器的设计与开发。 第2部分:取向,切割和退火

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In this contribution, which is the second paper in a series, we report on the design and development of several pieces of equipment, which facilitate the preparation of a hemispherical single crystal with a desired crystallographic surface structure starting with a spherical Pt single crystal. The pieces of equipment include a dual, high-resolution charge-coupled device (CCD)-based camera for acquiring Laue X-ray back-scattering patterns to orient spherical single crystals, a precision custom-designed jig for cutting and polishing pre-oriented single crystals, and an induction annealing system with controlled gaseous atmosphere for obtaining well-ordered and defect-free single crystal surfaces. Firstly, the paper describes the dual CCD camera setup, which allows acquiring, processing, and analyzing Laue back-scattering patterns in a digital format. The single crystal holder comprising a goniometer, the CCD-based detection system, and an optomechanical system together allow simple, adaptable, quick, and accurate single crystal orientation. Secondly, the paper presents details of a high-precision jig used in the cutting and polishing of single crystals. The jig setup includes a goniometer supporting a holder in which a single crystal is mounted and two micrometers. It maintains the desired single crystal surface parallel to the polishing disk on which abrasive materials are dispersed and polishing cloths are mounted. The micrometers allow monitoring the polishing rate and maintaining the desired single crystal surface exactly parallel to the polishing disk. Thirdly, the paper describes details of the annealing system. It consists of an induction-annealing furnace with a custom-made coil, a custom-designed quartz cell that facilitates single crystal annealing under controlled atmosphere conditions. Optimization of the induction annealing parameters and conditions, which determine the final quality of single crystal surfaces, is described in detail. Finally, the paper explains the unique aspects of this setup and methodically describes the operating procedures required to obtain a hemispherical single crystal with an atomically flat surface.
机译:在这一贡献中,这是一系列中的第二篇论文,我们报告了几件设备的设计和开发,其便于用具有球形PT单晶开始的所需晶体表面结构的半球形单晶。设备包括双,高分辨率电荷耦合器件(CCD)基础相机,用于获取Laue X射线背散散射图案,以定向球形单晶,这是一种用于切割和抛光前的精密定制设计的夹具单晶和具有受控气态气氛的感应退火系统,用于获得良好订购的无缺陷的单晶表面。首先,本文描述了双CCD摄像机设置,其允许以数字格式获取,处理和分析Laue背散射模式。包括测辐射计,基于CCD的检测系统和光学机械系统的单晶保持器一起允许简单,适应,快速,精确的单晶方向。其次,本文介绍了在单晶的切割和抛光中使用的高精度夹具的细节。夹具设置包括支撑支架的测筒子,其中安装单个晶体和两个微米。它保持所需的单晶表面平行于抛光盘,抛光盘处于磨料和抛光布安装。微米允许监测抛光速率并将所需的单晶表面保持完全平行于抛光盘。第三,本文描述了退火系统的细节。它由具有定制线圈的感应退火炉组成,定制设计的石英电池,其在受控气氛条件下有助于单晶退火。详细描述了确定单晶表面的最终质量的感应退火参数和条件的优化。最后,本文解释了该设置的独特方面,并且有条理地描述了通过原子平坦表面获得半球形单晶所需的操作程序。

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