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通过行星球磨机中氢化处理添加聚合物聚偏二氟乙烯来改善镁的吸氢和放氢性能。

Amelioration of Hydrogen Uptake and Release Features of Magnesium Adding a Polymer Polyvinylidene Fluoride via Milling in Hydrogen in a Planetary Ball Mill.

机构信息

Division of Advanced Materials Engineering, Hydrogen & Fuel Cell Research Center, Engineering Research Institute, Jeonbuk National University, 567 Baekje-daero Deokjin-gu Jeonju, 54896, Republic of Korea.

出版信息

J Nanosci Nanotechnol. 2020 Nov 1;20(11):7105-7113. doi: 10.1166/jnn.2020.18839.

Abstract

In the present study, a polymer polyvinylidene fluoride (PVDF) was chosen as an adding material to ameliorate hydrogen uptake and release features of Mg. Samples with a composition of 95 wt.% Mg+5 wt.% PVDF (called 95Mg + 5PVDF) were made via milling in hydrogen atmosphere in a planetary ball mill (reactive planetary ball milling). The hydrogen release reaction of magnesium hydride formed in the as-prepared 95Mg+5PVDF during reactive planetary ball milling started at 681 K. In the third cycle (CN = 3), the amount of hydrogen absorbed for 60 min, A (60 min), was 3.44 wt.% hydrogen at 573 K in 12 bar hydrogen. The PVDF is believed to have melted during reactive planetary ball milling, and the sliding or lubrication between Mg particles and hardened steel balls was avoided, leading to a good contact between them and a highly effective milling. The milling in hydrogen atmosphere in a planetary ball mill of Mg with PVDF is believed to have generated defects and cracks. The Mg₂C₃ produced from PVDF during hydrogen uptake-release cycling is believed to have been spread among particles and to have kept particles from coalescing. To the best of our knowledge, this is the first study to use a polymer PVDF as an additive material for the amelioration of hydrogen uptake and release features of Mg.

摘要

在本研究中,选择了一种聚合物聚偏二氟乙烯 (PVDF) 作为添加材料,以改善镁的吸氢和放氢特性。通过在行星球磨机(反应性行星球磨)中在氢气气氛下研磨,制备了组成 95wt.% Mg+5wt.% PVDF(称为 95Mg+5PVDF)的样品。在反应性行星球磨过程中,所制备的 95Mg+5PVDF 中形成的氢化镁的放氢反应在 681 K 开始。在第三循环(CN = 3)中,在 573 K 和 12 巴氢气下,60 分钟内吸收的氢气量 A(60 分钟)为 3.44wt.%。据信,在反应性行星球磨过程中,PVDF 会熔化,从而避免了 Mg 颗粒和硬化钢球之间的滑动或润滑,导致它们之间的良好接触和高效研磨。据信,在行星球磨机中用氢气研磨 Mg 与 PVDF 会产生缺陷和裂纹。在吸氢-放氢循环过程中,从 PVDF 中产生的 Mg₂C₃ 被认为分散在颗粒之间,防止颗粒聚结。据我们所知,这是首次使用聚合物 PVDF 作为添加剂来改善镁的吸氢和放氢特性的研究。

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