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Rigid non-carbocyclic ligand supported complexes for the study of unusual metal-ligand interactions adn applications in catalysis

Rigid non-carbocyclic ligand supported complexes for the study of unusual metal-ligand interactions adn applications in catalysis
刚性非碳环配体支持的配合物,用于研究不寻常的金属-配体相互作用和催化应用
批准号:
298370-2007
负责人:
Emslie, David
金额:
$2.7万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2007
资助国家:
加拿大
项目状态:
已结题
起止时间:
2007-01-01 至 2008-12-31

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中文摘要
翻译
Emslie集团的研究方向是合成和研究不寻常或独特的金属络合物,这些络合物从基础角度和改进催化剂和新型化学计量和催化转化的开发方面都很有意义。为此,我们的NSERC资助的研究计划集中在合成,性质和反应性:(1)硼烷附加后过渡金属配合物,和(2)非碳环钍和铀配合物。虽然相当不同,使用配体刚性,以创造一个非常特殊的金属结合环境是在这两个areas.Research领域1的核心重要性涉及使用新的刚性配体,其中包括两个供电子基团和电子受体(硼烷)安排周围的中央金属结合口袋。选择电子给体基团以便容易地结合到后过渡金属,从而将金属锚定在紧邻侧硼烷的位置。由于这种不寻常的情况,硼烷与金属或与金属结合的配体之间可能发生各种键合相互作用。研究所得到的配合物的性质和反应性对于进一步理解稀有金属-配体相互作用和开发催化新方法具有相当重要的意义。在研究领域2中,我们的重点是探索极其刚性和平面非碳环配体在钍和铀有机金属化学和氧化还原化学中的应用。本研究旨在制备高反应性配合物,了解控制配合物稳定性和反应性的因素,并发现新的催化剂和催化反应。催化剂设计对于制备新的化学品和材料(例如药物、农用化学品和塑料)以及发现制备当前可用的化学品和材料的更有效和环境友好的方法非常重要。基本认识的进展同样重要,因为它们有助于建立所有未来技术所依赖的化学知识基础。
英文摘要
Research in the Emslie group is directed towards the synthesis and study of unusual or unique metal complexes which are of interest from both a fundamental perspective and for the development of improved catalysts and new types of stoichiometric and catalytic transformation. To this end, our NSERC funded research program is focused on the synthesis, properties and reactivity of: (1) Borane-appended late transition metal complexes, and (2) Non-carbocyclic thorium and uranium complexes. While quite distinct, the use of ligand rigidity to create a very particular metal binding environment is of central importance in both areas.Research in area 1 involves the use of novel rigid ligands which incorporate both electron-donating groups and an electron-acceptor (a borane) arranged around a central metal binding pocket. Electron donor groups are selected in order to bind readily to late transition metals, thereby anchoring the metal in close proximity to the pendant borane. As a consequence of this unusual situation, a variety of bonding interactions between the borane and either the metal or the ligands bound to the metal can occur. Investigation of the properties and reactivity of the resulting complexes is of considerable importance to further our understanding of rare metal-ligand interactions, and for the development of new approaches in catalysis.In research area 2, our focus is on exploring the utility of extremely rigid and planar non carbocyclic ligands in thorium and uranium organometallic and redox chemistry. This research is directed towards the preparation of highly reactive complexes, in understanding the factors which control complex stability and reactivity, and in the discovery of new catalysts and catalytic reactions. Catalyst design is of great importance for the preparation of new chemicals and materials (e.g. pharmaceuticals, agrochemicals and plastics), and in the discovery of more efficient and environmentally friendly methods to prepare currently available chemicals and materials. Advances in fundamental understanding are of equal importance since they contribute to the knowledge base in chemistry upon which all future technologies are built.
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