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FAR SUPERIOR OXIDATION CATALYSTS BASED ON MACROCYCLIC COMPOUNDS

机译:基于大环化合物的远超氧化催化剂

摘要

An especially robust compound and its derivative metal complexes that are approximately one hundred-fold superior in catalytic performance to the previously invented TAML analogs is provided having the formula:; embedded image ;whereinY1, Y2, Y3 and Y4 are oxidation resistant groups which are the same or different and which form 5- or 6-membered rings with a metal, M, when bound to D; at least one Y incorporates a group that is significantly more stable towards nucleophilic attack than the organic amides of TAML activators; D is a metal complexing donor atom, preferably N; each X is a position for addition of a labile Lewis acidic substituent such as (i) H, deuterium, (ii) Li, Na, K, alkali metals, (iii) alkaline earth metals, transition metals, rare earth metals, which may be bound to one or more than one D, (iv) or is unoccupied with the resulting negative charge being balanced by a nonbonded countercation; at least one Y may contain a site that is labile to acid dissociation, providing a mechanism for shortening complex lifetime. The new complexes deliver catalytic performances that promise to revolutionize multiple oxidation technology spaces including water purification.
机译:提供具有下式的特别坚固的化合物及其衍生物金属配合物,其催化性能比先前发明的TML类似物高约一百倍。 “嵌入式图像” ;其中 Y 1 ,Y 2 ,Y 3 和Y 4 是抗氧化基团相同或不同,且与D键合时与金属M形成5或6元环;至少一个Y并入了一个比对TAM活化剂的有机酰胺而言对亲核攻击更稳定的基团; D是金属络合供体原子,优选N;每个X是添加不稳定的路易斯酸性取代基的位置,所述酸性取代基例如为(i)H,氘,(ii)Li,Na,K,碱金属,(iii)碱土金属,过渡金属,稀土金属,结合至一个或多个D,(iv)或未被占据,所产生的负电荷被非键合抗衡阳离子所平衡;至少一个Y可以包含对酸解离不稳定的位点,从而提供了缩短复杂寿命的机制。新的配合物具有催化性能,有望改变包括水净化在内的多种氧化技术领域。

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