The laccase-like reactivity of manganese oxide nanomaterials for pollutant conversion: rate analysis and cyclic voltammetry

Лаказоподобная реакционная способность наноматериалов на основе оксидов марганца при превращении загрязнителей: анализ скорости реакций и циклическая вольтамперометрия
Xinghao Wang, Jiaoqin Liu, Ruijuan Qu, Zunyao Wang, Qingguo Huang
2017-08-04

cyclic voltammetrylaccase-like catalysismanganese oxide nanomaterialspollutant oxidationγ-MnO2
Abstract Nanostructured manganese oxides, e.g. MnO2, have shown laccase-like catalytic activities, and are thus promising for pollutant oxidation in wastewater treatment. We have systematically compared the laccase-like reactivity of manganese oxide nanomaterials of different crystallinity, including α-, β-, γ-, δ-, and ɛ-MnO2, and Mn3O4, with 2,2′-azinobis-(3-ethylbenzthiazoline-6-sulfonate) (ABTS) and 17β-estradiol (E2) as the probing substrates. The reaction rate behaviors were examined with regard to substrate oxidation and oxygen reduction to evaluate the laccase-like catalysis of the materials, among which γ-MnO2exhibits the best performance. Cyclic voltammetry (CV) was employed to assess the six MnOxnanomaterials, and the results correlate well with their laccase-like catalytic activities. The findings help understand the mechanisms of and the factors controlling the laccase-like reactivity of different manganese oxides nanomaterials, and provide a basis for future design and application of MnOx-based catalysts.
1
ABTS and 17β-estradiol were used as probe substrates to evaluate pollutant oxidation and laccase-like catalytic performance.
2
Cyclic voltammetry results correlate well with catalytic activities, helping identify factors governing MnOx reactivity and guide catalyst design.
3
Reaction-rate analysis assessed both substrate oxidation and oxygen reduction to characterize laccase-like catalysis.
4
The study systematically compares laccase-like reactivity across α-, β-, γ-, δ-, and ɛ-MnO2 and Mn3O4 nanomaterials.
5
γ-MnO2 exhibits the highest laccase-like catalytic performance among the tested manganese oxide nanomaterials.

manganese oxide nanomaterials of different crystallinity (α-, β-, γ-, δ-, and ɛ-MnO2, and Mn3O4)

laccase-like catalytic reactivity for oxidation of ABTS and 17β-estradiol, including substrate oxidation, oxygen reduction, reaction-rate behavior, and controlling factors

Publication Details
Publication Date
2017-08-04
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Xinghao Wang
Jiaoqin Liu
Ruijuan Qu
Zunyao Wang
Qingguo Huang
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%