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Magnesium(I) halides (MgIX; X=Cl, Br, I), as high temperature molecules, are trapped and finally stored at ?80 °C in toluene/donor solutions. These solutions provide insights into the fundamental mechanism of reduction reactions using activated magnesium metal as a prototype for every base metal. The most important example of such a reaction is the preparation of Grignard reagents (RMgX). The details of this highly complex mechanism especially of intermediates between Mg metal and MgII (RMgX) remain unknown until today. The same is true for the reaction of bulk magnesium with Group 15 halide compounds that give biradicaloid species. We investigate the reduction of P?Cl bonds with solutions of [MgIBr(NnBu3)]2 ( 1 ). The phosphanes [ClP(μ‐NTer)]2 ( 2 ) and (Me3Si)2N‐PCl2 ( 3 ), were chosen as they had successfully been reduced by Mg metal before. Furthermore, reactions of both 1 and Mg metal are compared with an MgI chelate complex L1Mg?MgL1 containing a strong Mg?Mg σ‐bond.  相似文献   

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用硝酸及少量氢氟酸可将试样完全溶解,所得溶液可用于电感耦合等离子体原子发射光谱法(ICP-AES)或钼蓝分光光度法测定镁和镁合金中的硅含量,对ICP-AES测定硅的分析条件作了试验.为避免各共存元素的干扰,方法中选择波长为Si Ⅰ 251.611 nm及Si Ⅰ 212.412 nm的谱线作为分析谱线.在制作工作曲线时加入与待测样品等量的镁以补偿基体组分引起的基体效应,在选用上述两谱线作为分析线时,硅的质量浓度在40.0 mg·L-1以内时与谱线的发射强度均呈线性关系,所得检出限(3S/N)依次为6.2和15μg·L-1.应用此方法分析了3种镁合金标准样品,所得结果与标准值相符.  相似文献   

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Magnesium     
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