The bridge towards a more stable and active side-on-peroxido (Cu2II(µ-η2:η2-O2)) complex as a tyrosinase model system†

IF 3.3 3区 化学 Q2 CHEMISTRY, PHYSICAL
Rosalie Dalhoff, Regina Schmidt, Lena Steeb, Kristina Rabatinova, Matthias Witte, Simon Teeuwen, Salim Benjamaâ, Henrika Hüppe, Alexander Hoffmann and Sonja Herres-Pawlis
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引用次数: 0

Abstract

A novel dinucleating bis(pyrazolyl)methane ligand was developed for tyrosinase model systems. After ligand synthesis, the corresponding Cu(I) complex was synthesized and upon oxygenation, formation of a µ-η22 peroxido complex could be observed and monitored using UV/Vis-spectroscopy. Due to the high stability of this species even at room temperature, a molecular structure of the complex could be characterized via single-crystal XRD. Additional to its promising stability, the peroxido complex showed catalytic tyrosinase activity which was investigated via UV/Vis-spectroscopy. Products of the catalytic conversion could be isolated and characterized and the ligand could be successfully recycled after catalysis experiments. Furthermore, the peroxido complex was reduced by reductants with different reduction potentials. The characteristics of the electron transfer reactions were investigated with the help of the Marcus relation. The combination of the high stability and catalytic activity of the peroxido complex with the new dinucleating ligand, enables the shift of oxygenation reactions for selected substrates towards green chemistry, which is furthered by the efficient ligand recycling capability.

Abstract Image

作为酪氨酸酶模型体系†的桥梁,通往更稳定和活跃的过氧化物侧(Cu2II(μ -η2:η2-O2))配合物
为酪氨酸酶模型体系开发了一种新的二核双(吡唑基)甲烷配体。配体合成后,合成相应的Cu(I)配合物,氧化后,利用紫外/可见光谱可以观察和监测μ -η2:η2过氧化物配合物的形成。由于该物质即使在室温下也具有很高的稳定性,因此可以通过单晶XRD表征该配合物的分子结构。除了具有良好的稳定性外,该过氧化物配合物还表现出催化酪氨酸酶的活性,并通过紫外/可见光谱进行了研究。经过催化实验,可以对催化转化产物进行分离和表征,并可成功回收配体。此外,过氧化配合物还可被不同还原电位的还原剂还原。利用马库斯关系研究了电子转移反应的特性。高稳定性和催化活性的过氧化物配合物与新的双核配体相结合,使选定底物的氧化反应向绿色化学转变,而高效的配体回收能力进一步推动了这一转变。
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来源期刊
Faraday Discussions
Faraday Discussions 化学-物理化学
自引率
0.00%
发文量
259
期刊介绍: Discussion summary and research papers from discussion meetings that focus on rapidly developing areas of physical chemistry and its interfaces
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