期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
面向多晶金刚石的等离子体高效抛光技术
1
作者 肖玉玺 李昕宇 +1 位作者 张永杰 邓辉 《金刚石与磨料磨具工程》 CAS 北大核心 2024年第5期553-562,F0003,共11页
作为一种典型的难加工材料,多晶金刚石的抛光存在着材料去除率低、损伤引入较多、难以获得亚纳米级粗糙度等诸多问题。采用一种基于大气电感耦合等离子体的非接触式加工方法,在纯氩等离子体中引入氧气作为反应气,激发产生高活性氧自由基... 作为一种典型的难加工材料,多晶金刚石的抛光存在着材料去除率低、损伤引入较多、难以获得亚纳米级粗糙度等诸多问题。采用一种基于大气电感耦合等离子体的非接触式加工方法,在纯氩等离子体中引入氧气作为反应气,激发产生高活性氧自由基,并在多晶金刚石表面不同位点处发生差异化刻蚀,最终实现多晶金刚石的高效抛光。研究结果表明:随着含氧等离子体辐照的进行,多晶金刚石表面晶粒尖端位点被快速去除,晶粒间的高度差大幅下降,且金刚石表面粗糙度Sa在30 min内从10.10μm降低至93.70 nm,材料去除率可达34.4μm/min,远高于传统的机械或化学机械抛光方法。拉曼光谱与X射线衍射谱分析表明,该抛光方法未引入非晶碳或新应力损伤,不改变多晶金刚石表面晶粒取向。该方法可作为一种多晶金刚石粗抛技术,与化学机械抛光、紫外激发抛光等精抛工艺相结合,显著提升多晶金刚石的综合抛光效率。 展开更多
关键词 多晶金刚石 效抛光 大气电感耦合等离子体 高活性氧自由基
下载PDF
Air-promoted selective hydrogenation of phenol to cyclohexanone at low temperature over Pd-based nanocatalysts 被引量:2
2
作者 Qing Guo Shiguang Mo +6 位作者 Pengxin Liu Weidong Zheng Ruixuan Qin Chaofa Xu Youyunqi Wu Binghui Wu Nanfeng Zheng 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第11期1444-1449,共6页
Attaining high activity with high selectivity at low temperature is challenging in the selective hydrogenation of phenol to cyclohexanone due to its high activation energy (Ea, 55-70 kJ/mol). Here we report a simple... Attaining high activity with high selectivity at low temperature is challenging in the selective hydrogenation of phenol to cyclohexanone due to its high activation energy (Ea, 55-70 kJ/mol). Here we report a simple and efficient strategy for phenol hydrogenation catalyzed by Pd in aqueous phase at 30 ℃ by introducing air to promote the catalysis. With the assistance of air, 〉99% conversion and 〉99% selectivity were achieved over Pd(111)/Al2O3 with an overall turnover frequency (TOF) of 621 h-1, -80 times greater than that of the state-of-art Pd catalyst at 30 ℃. Mechanism studies revealed that phenol was activated to generate phenoxyl radicals. The radicals were yielded from the reaction between phenol and hydroxyl radicals in the presence of hydrogen, oxygen and protic solvent on Pd. The phenoxyl pathway resulted in a low apparent Ea (8.2 kJ/mol) and thus high activity. More importantly, this strategy of activating substrate by air can be adapted to other Pd based catalysts, offering a new thinking for the rational design of cyclohexanone production in industry. 展开更多
关键词 selective hydrogenation PHENOL PALLADIUM NANOCATALYSIS RADICAL
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部