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核化学。钍羰基配合物的合成与检测。

Nuclear chemistry. Synthesis and detection of a seaborgium carbonyl complex.

机构信息

Helmholtz-Institut Mainz, 55099 Mainz, Germany.

GSI Helmholtzzentrum für Schwerionenforschung GmbH, 64291 Darmstadt, Germany.

出版信息

Science. 2014 Sep 19;345(6203):1491-3. doi: 10.1126/science.1255720.

Abstract

Experimental investigations of transactinoide elements provide benchmark results for chemical theory and probe the predictive power of trends in the periodic table. So far, in gas-phase chemical reactions, simple inorganic compounds with the transactinoide in its highest oxidation state have been synthesized. Single-atom production rates, short half-lives, and harsh experimental conditions limited the number of experimentally accessible compounds. We applied a gas-phase carbonylation technique previously tested on short-lived molybdenum (Mo) and tungsten (W) isotopes to the preparation of a carbonyl complex of seaborgium, the 106th element. The volatile seaborgium complex showed the same volatility and reactivity with a silicon dioxide surface as those of the hexacarbonyl complexes of the lighter homologs Mo and W. Comparison of the product's adsorption enthalpy with theoretical predictions and data for the lighter congeners supported a Sg(CO)6 formulation.

摘要

实验研究的 transactinoide 元素提供基准结果的化学理论和探测的预测能力的趋势在周期表。到目前为止,在气相化学反应,简单的无机化合物与 transactinoide 在其最高氧化态已被合成。单原子的生产速率,半衰期短,和恶劣的实验条件限制了实验化合物的数量。我们应用气相羰基化技术以前测试的短期寿命钼(Mo)和钨(W)同位素的准备羰基配合物的锝,106 号元素。挥发性锝配合物表现出相同的挥发性和反应性与二氧化硅表面作为那些六羰基配合物的较轻的同系物 Mo 和 W。比较产品的吸附焓与理论预测和数据的较轻的同系物支持一个 Sg(CO)6 配方。

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