» Articles » PMID: 17764200

Structure-catalytic Function Relationship of SiO2-immobilized Mononuclear Cu Complexes: an EPR Study

Overview
Journal Langmuir
Specialty Chemistry
Date 2007 Sep 4
PMID 17764200
Citations 6
Authors
Affiliations
Soon will be listed here.
Abstract

Mononuclear CuL and Cu(2L) complexes, where L is propyl-thiazol-2-ylmethylene-amine, covalently immobilized onto SiO2, can catalyze efficiently the oxidation of 3,5-di-t-butylcatechol (DTBC) to 3,5-di-t-butylquinone (DTBQ) by utilizing ambient O2 as oxidant. By increasing the loading of L on SiO2, the DTBQ formation can be improved up to 400% vs the homogeneous catalyst. Equally important is however that grafting per se at low loading is not adequate for an improved catalytic activity. Appropriate loadings have to be achieved, which then may result in significant catalytic performance. Based on EPR spectroscopy a theoretical method is developed, eq A12, for spin-spin distance estimation in heterogeneously dispersed surface complexes. Practical rules including error estimates are provided. By applying this method to the [SiO2-CuL] catalysts it is shown that mononuclear copper complexes fixed on SiO2 with Cu...Cu distances as short as 4.9 +/- 0.3 A are responsible for the improved catalytic activity. The present results demonstrate that mononuclear Cu complexes can have considerable catecholase activity, if the proper geometrical proximity can be fixed. Grafting on SiO2 may be an efficient method for engineering catalysts with improved performance.

Citing Articles

Quantitative In Situ Monitoring of Cu-Atom Release by CuO Nanocatalysts under Photocatalytic CO Reduction Conditions: New Insights into the Photocorrosion Mechanism.

Zindrou A, Deligiannakis Y Nanomaterials (Basel). 2023; 13(11).

PMID: 37299676 PMC: 10254338. DOI: 10.3390/nano13111773.


Decoupling the Chemical and Mechanical Strain Effect on Steering the CO Activation over CeO-Based Oxides: An Experimental and DFT Approach.

Polychronopoulou K, AlKhoori S, AlBedwawi S, Alareeqi S, Hussien A, Vasiliades M ACS Appl Mater Interfaces. 2022; .

PMID: 35820019 PMC: 9335529. DOI: 10.1021/acsami.2c05714.


Model-Based Nanoengineered Pharmacokinetics of Iron-Doped Copper Oxide for Nanomedical Applications.

Naatz H, Manshian B, Luci C, Tsikourkitoudi V, Deligiannakis Y, Birkenstock J Angew Chem Int Ed Engl. 2019; 59(5):1828-1836.

PMID: 31755189 PMC: 7004194. DOI: 10.1002/anie.201912312.


Discrete complexes immobilized onto click-SBA-15 silica: controllable loadings and the impact of surface coverage on catalysis.

Nakazawa J, Smith B, Stack T J Am Chem Soc. 2012; 134(5):2750-9.

PMID: 22277027 PMC: 3277213. DOI: 10.1021/ja210400u.


The Catalytic Function of Nonheme Iron (III) Complex for Hydrocarbon Oxidation.

Bilis G, Louloudi M Bioinorg Chem Appl. 2010; .

PMID: 20689711 PMC: 2905942. DOI: 10.1155/2010/861892.