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高纯金属钛中微量氢的分析方法研究 被引量:3
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作者 卞敏 李英秋 +1 位作者 刘钧 段丽美 《稀有金属与硬质合金》 CAS CSCD 北大核心 2009年第4期36-40,共5页
采用高频感应热导法测定高纯金属钛中氢的质量分数。着重讨论了感应电流、坩埚类型、助熔剂、空白值、最小分析时间及样品质量对测定结果的影响,制定出了高纯金属钛中氢的分析方法。结果表明,该方法测定高纯金属钛试样中氢质量分数的... 采用高频感应热导法测定高纯金属钛中氢的质量分数。着重讨论了感应电流、坩埚类型、助熔剂、空白值、最小分析时间及样品质量对测定结果的影响,制定出了高纯金属钛中氢的分析方法。结果表明,该方法测定高纯金属钛试样中氢质量分数的相对标准偏差(RSD)为6.0%,加标回收率为98%~106%。利用综合测定程序,探讨了金属钛中氢分量的测试条件,并通过分峰实验计算了各氢分量的值。 展开更多
关键词 高纯金属钛 微量 氢分量 高频感应热导法
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Fundamental Study of Rare-earth-containing Catalytic Reduction Systems for End-group Functionalization of Telechelic Low-molecular-weight Fluoropolymers
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作者 LI Donghan NING Shurui +4 位作者 YU Lu LIAO Mingyi ZHANG Mengxia YOU Shibo FANG Qinghong 《材料导报》 北大核心 2025年第3期254-262,共9页
Herein the use of rare-earth compounds in catalytic reduction systems for the end-group functionalization of carboxyl-terminated low-molecularweight fluoropolymers was explored.Leveraging the high catalytic activity a... Herein the use of rare-earth compounds in catalytic reduction systems for the end-group functionalization of carboxyl-terminated low-molecularweight fluoropolymers was explored.Leveraging the high catalytic activity and selectivity of rare-earth compounds along with no residual impact on polymer product's performance,highly efficient catalytic reduction systems containing sodium borohydride(NaBH_(4))and rare-earth chloride(RECl_(3))were specifically designed for a telechelic carboxyl-terminated liquid fluoroeslastomer,aiming to facilitate the conversion of chainend carboxyl groups into hydroxyl groups and improvement in end-group reactivity.To achieve this,lanthanum chloride(LaCl_(3)),cerium chloride(CeCl_(3)),and neodymium chloride(NdCl_(3))were used separately to form catalytic reduction systems with NaBH_(4).The effects of solvent dosage,reaction temperature,reaction time length,and reductant dosage on carboxylic conversion were investigated,and the molecular chain structure,molecular weight,and functional group content of the raw materials and the products were analyzed and characterized by means of infrared spectroscopy(FTIR),proton nuclear magnetic resonance(^(1)H-NMR),fluorine-19 nuclear magnetic resonance(^(19)F-NMR),gel permeation chromatography(GPC),and chemical titration.Moreover,the catalytic activity and selectivity of the rare-earth chlorides,as well as the corresponding underlying interactions were discussed.Results indicated that the rare-earth-containing catalytic reduction systems studied in this work could efficiently convert the chain-end carboxyl groups into highly active hydroxyl groups,with a highest conversion up to 87.0%and differing catalytic reduction activities ranked as NaBH_(4)/CeCl_(3)>NaBH_(4)/LaCl_(3)>NaBH_(4)/NdCl_(3).Compared with the conventional lithium aluminum hydride(LiAIH_(4))reduction system,the NaBH_(4)/RECl_(3)systems provide multiple advantages such as mild reaction conditions,high conversion ratio with good selectivity,and environmental innocuity,and are potentially applicable as new reduction-catalysis combinations for the synthesis and functionalization of polymer materials. 展开更多
关键词 rare-earth chloride chain-end hydroxyl group telechelic low-molecular-weight fluoropolymers sodium borohydride
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Hydrogen sorption properties of nanocrystalline Mg_2FeH_6-based complex and catalytic effect of TiO_2
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作者 刘燚 汤盛龙 +3 位作者 方于虎 刘怀菲 崔建民 李松林 《Journal of Central South University》 SCIE EI CAS 2009年第6期876-880,共5页
The diversities of hydrogen sorption properties of Mg2FeH6-based complexes with and without TiO2 were investigated. Mg2FeH6-based complexes with and without TiO2 were synthesized respectively by reactive mechanical al... The diversities of hydrogen sorption properties of Mg2FeH6-based complexes with and without TiO2 were investigated. Mg2FeH6-based complexes with and without TiO2 were synthesized respectively by reactive mechanical alloying,and hydrogen sorption properties of the complexes were examined by Sieverts-type apparatus. The results show that the sample without TiO2 releases 4.43 % (mass fraction) hydrogen in 1.5 ks at 653 K under 0.1 MPa H2 pressure and absorbs 90% of the total 4.43 % (mass fraction) hydrogen absorbed in 85 s at 623 K under 4.0 MPa H2 pressure. But for the sample with TiO2 addition under the same condition,it only needs 400 s to release all of the stored hydrogen and 60 s to absorb 90% of the total hydrogen absorbed. The activation energies for desorption process of the samples with and without TiO2 are determined to be 71.2 and 80.3 kJ/(mol.K),respectively. The improvement in hydrogen sorption rate and and reduction in activation energy can be attributed to the addition of TiO2. 展开更多
关键词 Mg-based hydrogen storage materials reactive mechanical alloying hydrogen sorption properties KINETICS activation energy
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