1)  Pd/Fe bimetal
钯/铁双金属
2)  nanoscale Pd/Fe bimetallic particles
纳米钯/铁双金属颗粒
1.
Nanoscale Pd/Fe bimetallic particles and membrane stabilized nanoscale Pd/Fe bimetallic particles were used to enhance dechlorination efficiency of iron.
为了提高铁催化还原的效率,人们采用纳米钯/铁双金属颗粒,膜载纳米钯/铁双金属颗粒对氯代有机物进行还原脱氯研究。
3)  membrane stabilized nanoscale Pd/Fe bimetallic particles
膜载纳米钯/铁双金属颗粒
1.
Nanoscale Pd/Fe bimetallic particles and membrane stabilized nanoscale Pd/Fe bimetallic particles were used to enhance dechlorination efficiency of iron.
为了提高铁催化还原的效率,人们采用纳米钯/铁双金属颗粒,膜载纳米钯/铁双金属颗粒对氯代有机物进行还原脱氯研究。
4)  palladium
1.
Extraction and separation of platinum and palladium from spent catalysts with dimethyglyoxime-CHCl_3;
丁二酮肟-氯仿体系萃取分离铂、钯
2.
Study on floatation separation of palladium by cetyl pyridinium bromide-potassium bromide-sodium nitrate system;
溴化十六烷基吡啶-溴化钾-硝酸钠体系浮选分离钯的研究
3.
Study on Solid Phase Extraction and Spectrophotometric Determination of Palladium with MCI-GEL Resin;
2-(2-喹啉偶氮)-5-二乙氨基苯胺固相萃取光度法测定痕量钯的研究
5)  Pd
1.
Research and Application of the Method for Selective Titration of Pd in Au, Ag, Pt, Pd Alloys;
金、银、铂、钯合金中钯的选择性滴定方法的研究与应用
2.
Determination of Pd Content in Hydrotreating Catalyst by ICP-AES;
ICP-AES法测定加氢催化剂中钯含量
3.
The enrichment and separation of race gold,Pt and Pd from the ores based on co-precipitation;
共沉淀富集分离矿石中微量金、铂、钯
6)  palladium(Ⅱ)
钯(Ⅱ)
1.
It was found that palladium(Ⅱ),in the medium of phosphoric acid,can inhibit the color development reaction of DApCM and vanadium(Ⅴ).
通过发现钯(Ⅱ)在磷酸介质中能抑制二安替比林对氯苯基甲烷(DApCM)与钒(Ⅴ)的显色反应,研究了反应的条件和动力学参数,建立了测定微量钯(Ⅱ)的新方法。
2.
The intramolecular aromaticring stacking interactions in ternary mixedligand palladium(Ⅱ)nucleotide (NTP)aromatic heterocyclic ring base(A) have been studied by 1HNMR, Where NTP refers to adenosine 5′triphosphate (ATP) and uridine 5′triphosphate (UTP); A refers to 1, 10phenanthroline, 2,2′bipyridyl, and Ltryptophane.
用1HNMR法研究了钯(Ⅱ)-NTP-A体系内金属离子与配体以及配体与配体之间的相互作用。
参考词条
补充资料:[1,1'-双(二苯基膦基)二茂铁]二氯化钯
分子式:C34H28Cl2FeP2Pd
分子量:731.71
CAS号:72287-26-4

性质:熔点275-280°C。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。