Pt Nanoparticles with High Oxidase-Like Activity and Reusability for Detection of Ascorbic Acid

Noble metal nanoenzymes such as Pt, Au, Pd, etc. exhibit magnificent activity. However, due to the scarce reserves and expensive prices of precious metals, it is essential to investigate their enzyme-like activity and explore the possibility of their reuse. In this work, the oxidase-like activity an...

Full description

Bibliographic Details
Main Authors: Qin Cheng, Yong Yang, Yusi Peng, Meng Liu
Format: Article
Language:English
Published: MDPI AG 2020-05-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/10/6/1015
id doaj-aec59af698684fb8aeae9b6b6a3299da
record_format Article
spelling doaj-aec59af698684fb8aeae9b6b6a3299da2020-11-25T03:02:19ZengMDPI AGNanomaterials2079-49912020-05-01101015101510.3390/nano10061015Pt Nanoparticles with High Oxidase-Like Activity and Reusability for Detection of Ascorbic AcidQin Cheng0Yong Yang1Yusi Peng2Meng Liu3Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, ChinaShanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, ChinaShanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, ChinaShanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, ChinaNoble metal nanoenzymes such as Pt, Au, Pd, etc. exhibit magnificent activity. However, due to the scarce reserves and expensive prices of precious metals, it is essential to investigate their enzyme-like activity and explore the possibility of their reuse. In this work, the oxidase-like activity and reusability of several Pt nanoparticles with different morphologies were detected. We compared the Pt nanoparticles (NPs) with a size of about 30 nm self-assembled by 5 nm Pt nanoparticles and Pt nanoparticles (Pt-0 HCl) with a diameter of about 5 nm, and found that their Michaelis−Menten constants (Km) were close and their initial performance similar, but the Pt NPs had better reusability. This was probably attributed to the stacked structure of Pt NPs, which was conducive to the substance transport and sufficient contact. At the same time, it was found that the size, dispersion, and organic substances adsorbed on the surface of Pt nanoparticles would have a significant impact on their reusability. A colorimetric detection method was designed using the oxidase-like activity of Pt NPs to detect ascorbic acid in triplicate. The limits of detection were 131 ± 15, 144 ± 14, and 152 ± 9 nM, with little difference. This research not only showed that the morphology of the catalyst could be changed and its catalytic performance could be controlled by a simple liquid phase synthesis method, but also that it had great significance for the reuse of Pt nanoenzymes in the field of bioanalysis.https://www.mdpi.com/2079-4991/10/6/1015Pt nanoparticlesoxidase-like activityreusabilitycolorimetric methodascorbic acid
collection DOAJ
language English
format Article
sources DOAJ
author Qin Cheng
Yong Yang
Yusi Peng
Meng Liu
spellingShingle Qin Cheng
Yong Yang
Yusi Peng
Meng Liu
Pt Nanoparticles with High Oxidase-Like Activity and Reusability for Detection of Ascorbic Acid
Nanomaterials
Pt nanoparticles
oxidase-like activity
reusability
colorimetric method
ascorbic acid
author_facet Qin Cheng
Yong Yang
Yusi Peng
Meng Liu
author_sort Qin Cheng
title Pt Nanoparticles with High Oxidase-Like Activity and Reusability for Detection of Ascorbic Acid
title_short Pt Nanoparticles with High Oxidase-Like Activity and Reusability for Detection of Ascorbic Acid
title_full Pt Nanoparticles with High Oxidase-Like Activity and Reusability for Detection of Ascorbic Acid
title_fullStr Pt Nanoparticles with High Oxidase-Like Activity and Reusability for Detection of Ascorbic Acid
title_full_unstemmed Pt Nanoparticles with High Oxidase-Like Activity and Reusability for Detection of Ascorbic Acid
title_sort pt nanoparticles with high oxidase-like activity and reusability for detection of ascorbic acid
publisher MDPI AG
series Nanomaterials
issn 2079-4991
publishDate 2020-05-01
description Noble metal nanoenzymes such as Pt, Au, Pd, etc. exhibit magnificent activity. However, due to the scarce reserves and expensive prices of precious metals, it is essential to investigate their enzyme-like activity and explore the possibility of their reuse. In this work, the oxidase-like activity and reusability of several Pt nanoparticles with different morphologies were detected. We compared the Pt nanoparticles (NPs) with a size of about 30 nm self-assembled by 5 nm Pt nanoparticles and Pt nanoparticles (Pt-0 HCl) with a diameter of about 5 nm, and found that their Michaelis−Menten constants (Km) were close and their initial performance similar, but the Pt NPs had better reusability. This was probably attributed to the stacked structure of Pt NPs, which was conducive to the substance transport and sufficient contact. At the same time, it was found that the size, dispersion, and organic substances adsorbed on the surface of Pt nanoparticles would have a significant impact on their reusability. A colorimetric detection method was designed using the oxidase-like activity of Pt NPs to detect ascorbic acid in triplicate. The limits of detection were 131 ± 15, 144 ± 14, and 152 ± 9 nM, with little difference. This research not only showed that the morphology of the catalyst could be changed and its catalytic performance could be controlled by a simple liquid phase synthesis method, but also that it had great significance for the reuse of Pt nanoenzymes in the field of bioanalysis.
topic Pt nanoparticles
oxidase-like activity
reusability
colorimetric method
ascorbic acid
url https://www.mdpi.com/2079-4991/10/6/1015
work_keys_str_mv AT qincheng ptnanoparticleswithhighoxidaselikeactivityandreusabilityfordetectionofascorbicacid
AT yongyang ptnanoparticleswithhighoxidaselikeactivityandreusabilityfordetectionofascorbicacid
AT yusipeng ptnanoparticleswithhighoxidaselikeactivityandreusabilityfordetectionofascorbicacid
AT mengliu ptnanoparticleswithhighoxidaselikeactivityandreusabilityfordetectionofascorbicacid
_version_ 1724690198193766400