1) tin hydride
锡氢化物
1.
Forming conditions and physical and chemical characteristics of tin hydride are discussed.
论述了锡氢化物的形成条件和物理化学特征。
2) tributyltin hydride
三丁基锡氢化物
1.
An active carbon-supported palladium catalyst was prepared and it show high catalytic activity and selectivity in the synthesis of arylaldehydes by reducing acyl chlorides with tributyltin hydride.
制备了活性炭负载钯催化剂,发现它对三丁基锡氢化物还原酰氯合成芳香醛的反应具有较高的催化活性和化学选择性,催化剂可重复使用,减少了贵金属Pd的流失。
2.
Prepared tributyltin hydride, cinnamoyl chloride and Pd(Ⅱ)/γ-Al_2O_3.
制备三丁基锡氢化物、肉桂酰氯及高分子载钯催化剂Pd(Ⅱ)/γ-Al2O3,研究了Pd(Ⅱ)/γ-Al2O3对三丁基锡氢化物还原肉桂酰氯制备肉桂醛反应的催化活性,考察了催化剂的使用寿命。
3) organotin hydride
有机锡氢化物
4) tin alloy hydride
锡合金氢化物
1.
Tin in magma and magmatic hydrothermal solution migrates as forms of tin hydride and tin alloy hydride to shallow crust level which,then are oxidized to tin oxide,tin alloy mineral or combine with S,H 2S,forming tin sulfides.
在岩浆和热液中 ,锡以锡氢化物、锡合金氢化物迁移至地壳浅部 ,锡氢化物、锡合金氢化物被氧化成锡氧化物、锡合金矿物 ,或与硫、硫化氢作用形成锡的硫化矿物。
5) indium-tin hydroxide
铟锡氢氧化物
1.
The experimental results show that amorphous indium-tin hydroxide composite powder was first transformed into amorphous 1TO composite powder, then into crystal ITO composite powder, and the temperature of crystallization is about 390℃.
采用热分析、XRD等方法,研究了用化学共沉淀法制备的铟锡氢氧化物复合粉末在煅烧过程中的变化规律。
6) tin oxides and tin hydrooxides
锡氧化物及氢氧化物
补充资料:多烯烃的C12-30碳氢化合物(乙烯的聚合物副产品)
CAS:68911-05-7
中文名称:多烯烃的C12-30碳氢化合物(乙烯的聚合物副产品)
英文名称:Hydrocarbons, C12-30, olefin-rich, ethylene polymn. by-product
C12-30-Olefin-paraffin (distillation column bottoms)
hydrocarbons, c12-30, olefin-rich, ethylene polymn.by-product
Hydrocarbons,C12-30,olefin-rich,ethylene polymn. by-product
C12-30-Olefin-paraffin(distillation column bottoms
中文名称:多烯烃的C12-30碳氢化合物(乙烯的聚合物副产品)
英文名称:Hydrocarbons, C12-30, olefin-rich, ethylene polymn. by-product
C12-30-Olefin-paraffin (distillation column bottoms)
hydrocarbons, c12-30, olefin-rich, ethylene polymn.by-product
Hydrocarbons,C12-30,olefin-rich,ethylene polymn. by-product
C12-30-Olefin-paraffin(distillation column bottoms
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条