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SPP 1178: Experimental Charge Density as the Key to Understand Chemical Interactions

SPP 1178: Experimental Charge Density as the Key to Understand Chemical Interactions
SPP 1178:实验电荷密度是理解化学相互作用的关键
批准号:
5472182
负责人:
金额:
$0.0万
依托单位国家:
德国
项目类别:
Priority Programmes
财政年份:
2005
资助国家:
德国
项目状态:
已结题
起止时间:
2004-12-31 至 2014-12-31

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中文摘要
翻译
最近的结果从实验电荷密度调查表明,该方法能够给出有争议的讨论键合问题的答案,并提供创新的新概念。在该优先计划中,该方法是通过整合领先的国家和国际团体,旗舰研究设施(FRM II中子反应堆,同步加速器),理论方法和现代光谱学来开发的。贡献化学制备组提供有条理和化学相关的铅结构,具有目前不理解的键合。方法组和制备组的密切联系确保了电荷密度研究的结果将产生一种比目前可用的更广泛使用的共同语言。科学的协同作用来自于增加视野:方法学家在化学相关系统中工作,综合导向的化学家通过对系统的更深入洞察获得新概念。
英文摘要
The recent results from experimental charge density investigations showed that the method is capable to give answers to controversially discussed bonding issues and to provide innovative new concepts. In this Priority Programme the method is developed by integration of leading national und international groups, flagship research facilities (neutron reactor FRM II, synchrotron), theoretical approaches and modern spectroscopy. The contributing chemical-preparative groups supply methodically and chemically relevant lead structures featuring currently not understood bonding. The close linking of the methodical and preparative groups assures that the results of the charge density studies will generate a common language, wider used than currently available. The scientific synergy results from increasing the field of view: methodologists work at chemical relevant systems, and synthetically orientated chemists get new concepts via the deeper insight in their systems.
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