Abstract
系列金(I)有机膦化合物的合成
Synthesis of Organic Phosphine Gold(I) Compounds
Received:September 11, 2014  
DOI:
中文关键词: 有机化学  合成路线  二甲基硫醚氯化金(I)  有机膦化金(I)
英文关键词: organic chemistry  synthesis route  chloro(dimethyl sulfide) gold  organic phosphine gold(I)
基金项目:稀贵金属综合利用新技术国家重点实验室开放课题(2014020605);国家科技支撑计划(2012BAE06B08)。
Author NameAffiliation
YU Juan State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China 
LEI Jing State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China 
JIANG Jing State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China 
CHANG Qiaowen State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China 
YAN Caixian State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China 
YE Qingsong State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China 
LIU Weiping State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China 
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中文摘要:
      以氯金(III)酸(HAuCl4)为起始原料,经过两步反应合成了3种有机膦氯化金化合物,产率均在95%以上。首先HAuCl4与二甲基硫醚(Me2S)反应,制备二甲基硫醚氯化金(I)中间体;然后与有机膦,包括三苯基磷(PPh3)、双(二苯基膦)二茂铁(dppf)、1,2-双(二苯基膦)乙烷(dppe)反应,合成了的三苯基膦氯化金(I) [AuCl(PPh3)]等有机膦氯化金,[AuCl(PPh3)]与三氟甲烷磺酸银(AgSO3CF3)反应,可进一步获得三氟甲烷磺酸三苯基膦金(I) [(CF3SO3)][Au(PPh3)]。
英文摘要:
      Three organic-phosphine gold(I) chlorides were synthesized from HAuCl4 as the starting chemical via a two-step process, with a yield of 95%. The reaction of HAuCl4 with dimethyl sulfide (Me2S) produced an intermediate [AuCl(Me2S)] which was then converted to the corresponding organic- phosphine gold(I) chloride by mixing with triphenylphosphine (PPh3), 1,1''-bis(diphenylphosphino)- ferrocene (dppf) or 1,2-bis(diphenylphosphino)ethane (dppe). Replacing chloride in [AuCl(PPh3)] with AgSO3CF3 gave rise to the product [(CF3SO3)][Au(PPh3)].
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