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基于HF酸蚀刻速率法的ULE玻璃铣磨亚表面破坏层深度检测
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作者 汉语 徐井华 +2 位作者 崔舒 张勇 刘成有 《通化师范学院学报》 2017年第6期35-37,共3页
HF酸蚀刻速率法是光学材料亚表面损伤检测的一种有效方法.本文利用该方法对ULE玻璃铣磨亚表面破坏层深度进行了测量.测量结果表明,在25wt%HF酸作用下,蚀刻速率曲线在90min后到达拐点,对应的亚表面破坏层深度约为30μm.
关键词 ULE玻璃 铣磨 亚表面损伤 HF蚀刻速率
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树脂粘接剂在全瓷修复中的应用 被引量:6
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作者 杨利君 《国外医学(口腔医学分册)》 2003年第3期229-230,233,共3页
全瓷修复是当今口腔固定修复的发展趋势之一。全瓷修复体依赖良好的树脂粘接剂以保证其临床成功。目前,全瓷修复树脂粘接剂与牙本质的粘接技术及瓷表面处理技术仍在不断探索改进之中,以期进一步提高临床粘接效果。本文对全瓷修复树脂粘... 全瓷修复是当今口腔固定修复的发展趋势之一。全瓷修复体依赖良好的树脂粘接剂以保证其临床成功。目前,全瓷修复树脂粘接剂与牙本质的粘接技术及瓷表面处理技术仍在不断探索改进之中,以期进一步提高临床粘接效果。本文对全瓷修复树脂粘接剂的组成及其与牙本质的粘接、与全瓷修复体的粘接原理、技术和效果作一综述。 展开更多
关键词 全瓷修复 树脂粘接剂 双酚A双甲基丙烯缩水甘油酯 氨基甲酯双甲基丙烯 粘接技术 酸蚀刻法 硅烷偶联剂
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Carbon-supported ultrafine Pt nanoparticles modified with trace amounts of cobalt as enhanced oxygen reduction reaction catalysts for proton exchange membrane fuel cells 被引量:7
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作者 Xuejun Tang Dahui Fang +6 位作者 Lijuan Qu Dongyan Xu Xiaoping Qin Bowen Qin Wei Song Zhigang Shao Baolian Yi 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第4期504-514,M0002,共12页
To accelerate the kinetics of the oxygen reduction reaction(ORR)in proton exchange membrane fuel cells,ultrafine Pt nanoparticles modified with trace amounts of cobalt were fabricated and decorated on carbon black thr... To accelerate the kinetics of the oxygen reduction reaction(ORR)in proton exchange membrane fuel cells,ultrafine Pt nanoparticles modified with trace amounts of cobalt were fabricated and decorated on carbon black through a strategy involving modified glycol reduction and chemical etching.The obtained Pt36Co/C catalyst exhibits a much larger electrochemical surface area(ECSA)and an improved ORR electrocatalytic activity compared to commercial Pt/C.Moreover,an electrode prepared with Pt36Co/C was further evaluated under H2-air single cell test conditions,and exhibited a maximum specific power density of 10.27 W mgPt^-1,which is 1.61 times higher than that of a conventional Pt/C electrode and also competitive with most state-of-the-art Pt-based architectures.In addition,the changes in ECSA,power density,and reacting resistance during the accelerated degradation process further demonstrate the enhanced durability of the Pt36Co/C electrode.The superior performance observed in this work can be attributed to the synergy between the ultrasmall size and homogeneous distribution of catalyst nanoparticles,bimetallic ligand and electronic effects,and the dissolution of unstable Co with the rearrangement of surface structure brought about by acid etching.Furthermore,the accessible raw materials and simplified operating procedures involved in the fabrication process would result in great cost-effectiveness for practical applications of PEMFCs. 展开更多
关键词 Proton exchange membrane fuel cells Oxygen reduction reaction Ultrafine Pt nanoparticles Trace amounts of cobalt Modified glycol method Chemical etching strategy
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