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首页> 外文期刊>Nature Communications >Noble metal nanoclusters and nanoparticles precede mineral formation in magmatic sulphide melts
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Noble metal nanoclusters and nanoparticles precede mineral formation in magmatic sulphide melts

机译:贵金属纳米团簇和纳米颗粒先于岩浆硫化物熔体中形成矿物

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摘要

In low temperature aqueous solutions, it has long been recognized by in situ experiments that many minerals are preceded by crystalline nanometre-sized particles and non-crystalline nanophases. For magmatic systems, nanometre-sized precursors have not yet been demonstrated to exist, although the suggestion has been around for some time. Here we demonstrate by high temperature quench experiments that platinum and arsenic self-organize to nanoparticles, well before the melt has reached a Pt-As concentration at which discrete Pt arsenide minerals become stable phases. If all highly siderophile elements associate to nanophases in undersaturated melts, the distribution of the noble metals between silicate, sulphide and metal melts will be controlled by the surface properties of nano-associations, more so than by the chemical properties of the elements.RI Nagel, Thorsten /K-3007-2012
机译:在低温水溶液中,很久以来就已通过原位实验认识到,许多矿物先于晶体纳米尺寸的颗粒和非晶体纳米相。对于岩浆系统,尽管已经存在了一段时间,但尚未证明存在纳米级的前体。在这里,我们通过高温淬火实验证明,在熔体达到Pt-As浓度(离散的Pt砷化物矿物变为稳定相)之前,铂和砷就会自组织成纳米颗粒。如果所有高度亲铁的元素都与不饱和熔体中的纳米相缔合,则贵金属在硅酸盐,硫化物和金属熔体之间的分布将受纳米缔合的表面性质控制,而不是受元素的化学性质控制。 ,托尔斯滕/ K-3007-2012

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