首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Laser ablation synthesis of new phosphorus and phosphorus-sulfur clusters and their TOF mass spectrometric identification
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Laser ablation synthesis of new phosphorus and phosphorus-sulfur clusters and their TOF mass spectrometric identification

机译:新的磷和磷-硫团簇的激光烧蚀合成及其TOF质谱鉴定

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摘要

Laser ablation of elemental phosphorus, sulfur, their mixtures or some phosphorus sulfides in connection with Time-Of-Flight (TOF) mass spectrometry was studied. Laser ablation of pure red phosphorus leads to formation of singly charged P-n(+) (n = 1-189) and P-n(-) (n = 1-225) clusters. Much higher n values than those known in the literature were proved. Similarly, laser ablation of elemental sulfur produces S-m(+) (m = 1-11) and S-m(-) (m = 1-15) species. Via laser ablation of P4S3 and P4S10 compounds, the formation of several clusters with different P:S ratio was observed. Their stoichiometry was estimated from the mass spectra and natural abundance of sulfur isotopes. Similarly to laser ablation of red phosphorus, the amounts of PnSm clusters generated from P4S3 and P4S10 with an odd number of phosphorus atoms were much higher than those with an even number. Generation of various mixed P-S clusters was also reached via direct laser ablation of a mixture of the elements. Higher yield of the mixed clusters was obtained when the mixture was first homogenized using ultrasound. Partially, some reactions were also initiated by ultrasound itself.Totally, at least 68 new PnSm clusters were formed and detected. The laser ablation synthesis either from phosphorus sulfides or from elemental mixtures represents a new possibility of forming and studying mixed clusters of these elements. (C) 2004 Elsevier Ltd. All rights reserved.
机译:研究了飞行时间质谱(TOF)对元素磷,硫,它们的混合物或一些硫化磷的激光烧蚀。纯红磷的激光烧蚀导致形成单电荷的P-n(+)(n = 1-189)和P-n(-)(n = 1-225)团簇。事实证明,n值比文献中已知的值高得多。同样,激光烧蚀元素硫会产生S-m(+)(m = 1-11)和S-m(-)(m = 1-15)物质。通过激光烧蚀P4S3和P4S10化合物,观察到了几个具有不同P:S比的簇的形成。根据质谱和硫同位素的自然丰度估算其化学计量。与激光烧蚀红磷相似,由具有奇数个磷原子的P4S3和P4S10生成的PnSm团簇的数量要远高于具有偶数个磷原子的PnSm团簇。还可以通过直接激光烧蚀元素的混合物来生成各种混合的P-S团簇。当首先使用超声将混合物均质时,可获得更高的混合团簇收率。部分原因是超声本身也引发了一些反应。总共至少形成和检测了68个新的PnSm团簇。由硫化磷或元素混合物进行的激光烧蚀合成代表了形成和研究这些元素的混合簇的新可能性。 (C)2004 Elsevier Ltd.保留所有权利。

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