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1)  lithium hydride
氢化锂
1.
Based on the turning experiiment, the influence of cutting parameters on the surface roughness of machined lithium hydride parts and it’s mechanism are studied.
通过车削试验研究了不同切削参数对氢化锂材料加工表面粗糙度的影响趋势及其成因。
2.
In this paper,foamed lithium hydride bulk material with regular shape and homogeneous aperture was fabricated by powder metallurgy process, and PCP was used as pore-forming material in the powder metallurgy processes.
以N型对二甲苯二聚体(PCP)为造孔剂,采用粉末冶金的方法制备出外形规则、孔径均匀的低密度泡沫氢化锂块体材料。
2)  lithium borohydride
硼氢化锂
1.
Firstly,3,4,5-tris(n-dodecan-1-yloxy)benzyl alcohol was synthesized by the alkylation of methyl-3,4,5-trihydroxylbenzoate with 1-bromododecane,followed by the reduction of 3,4,5-tris(n-dodecan-1-yloxy)benzoate with lithium borohydride;then 3,4,5-tris(n-dodecan-1-yloxy)benzyl aldehyde was obtained through oxidation of 3,4,5-tris(n-dodecan-1-yloxy)benzy.
以没食子酸甲酯为原料,与1-溴代十二烷醚化生成3,4,5-三-(十二烷氧基)苯甲酸甲酯,然后采用原位生成的硼氢化锂还原成3,4,5-三-(十二烷氧基)苯甲醇,再用氯铬酸吡啶盐(PCC)氧化成3,4,5-三-(十二烷氧基)苯甲醛,最后与巴比妥酸进行Knoevenagel缩合反应得到了标题化合物。
2.
3,5Dihydroxybenzyl alcohol is synthesized from 3,5dihydroxybenzoic acid by improved esterification,acylation and reduction by lithium borohydride,the total yield is 75%,which gives a convenient synthetic method.
以3,5二羟基苯甲酸为原料,经酯化、酰化、硼氢化锂还原等改进步骤合成了3,5二羟基苯甲醇,总收率达75%,提供了一条较为简便的适合于工业化生产的合成方法。
3.
Recently,lithium borohydride(LiBH_4) and other related complex metal hydrides have attracted ever-increasing attention as potential high-capacity hydrogen storage media.
近年来,随着储氢材料领域的不断拓展,以硼氢化锂(LiBH4)为典型代表的高储量配位金属氢化物日渐成为新兴的储氢材料研究热点。
3)  lithium hydroxide
氢氧化锂
1.
Preparation of lithium hydroxide from lithium sulphate in a three-compartments membrane electrolysis system;
三室膜电解法由硫酸锂制备氢氧化锂的实验研究
2.
A Study on the Regeneration and Utilization of Lithium Hydroxide Used as Gas Purificant;
空气净化用氢氧化锂的再生利用研究
3.
The regeneration of lithium hydroxide used in isolated system has been studied.
氢氧化锂在特殊环境中用作空气净化剂,吸收人体呼吸排出的二氧化碳。
4)  lithium aluminium hydride
氢化铝锂
1.
According to the strong reducibility of lithium aluminium hydride and asymmetric selectivity of binaphthol,the authors reduce camphor into D-borneol by using D-binaphthol modified lithium aluminium hydride as chiral reagent.
根据氢化铝锂的强还原性和联萘酚的不对称选择性,用右旋联萘酚改性过的氢化铝锂为手性试剂,把樟脑还原成右旋龙脑。
2.
0]nonane (C14H16N2O2)by the reduction of lithium aluminium hydride.
采用氢化铝锂还原8-苄基-7,9-二氧代-2,8-二氮杂双环[4。
3.
In this method,2,6-Difluorobenzamide used for the raw material,lithium aluminium hydride used for the reducing agent.
该方法以2,6-二氟苯甲酰胺为原料用氢化铝锂还原,该方法反应条件温和、操作以及分离简便,并且通过实验得出该反应的最佳反应条件,目标化合物通过红外、核磁等分析手段进行了确认。
5)  LiOH
氢氧化锂
1.
LiFePO4 was prepared under vacuum conditions using LiOH as lithium sources.
以氢氧化锂为锂源,在真空条件下合成了锂离子电池正极材料LiFePO4。
6)  lithium aluminum hydride
氢化铝锂
1.
A novel reaction of α,β-unsaturated esters and ketones with lithium aluminum hydride in dry tetrahydrofuran solution at 0 ℃ affords, in addition to saturated and unsaturated alcohols, the corresponding 1,3-diols in moderate yield.
在 0℃下 ,以四氢呋喃为溶剂 ,用氢化铝锂还原α ,β 不饱和酯和酮 ,除得到正常的还原产物一醇外 ,还以适中的产率方便地得到 1,3 二醇 ,该反应原料易得 ,操作简单 ,有望应用于合成含有 1,3 二醇骨架结构的天然产
2.
A chiral reagent prepared by (1S, 2R) 1 dibutylamino 2 indanol (R*OH) and lithium aluminum hydride was first applied to the asymmetric reduction of acetophenone.
(1S,2R)-1-二丁氨基-1,2-二氢-2-茚醇(ROH)与氢化铝锂形成的手性试剂首次用于苯乙酮的不对称还原研究。
3.
A novel method was developed and carefully studied for the synthesis of polyoxygenated cyclohexene-yl-methanol from shikimic acid by means of esterification with methanol,followed by protection by DMP and TBDMSCl and reduction by mixed THF solution of lithium aluminum hydride and aluminum chloride.
以莽草酸为原料,与甲醇成酯,然后丙酮叉保护顺式的邻二羟基,叔丁基二甲硅氯保护另一个羟基,最后用氢化铝锂和三氯化铝还原,得到标题化合物,其结构经IR1、HNMR、HR-MS确证,总产率86。
补充资料:氢化锂
      化学式LiH。白色晶状固体;在干燥空气中稳定,与水反应放出氢气。氢化锂由金属锂与氢在 700℃反应生成;可做氢气发生剂和还原剂。
  

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