» Articles » PMID: 30207336

The H Sensing Properties of Facets-dependent Pd Nanoparticles-supported ZnO Nanorods

Overview
Journal Dalton Trans
Specialty Chemistry
Date 2018 Sep 13
PMID 30207336
Citations 4
Authors
Affiliations
Soon will be listed here.
Abstract

The loading of noble-metal nanoparticles (NPs) is an effective approach for the enhancement of H sensing performances, although there have been rare reports focused on the effect of the facets of noble-metal nanoparticles in the H sensing performance. The catalytic and adsorption performance of noble-metal nanocrystals is mainly determined by their exposed facets, while the gas sensing performance of sensors is strongly correlated to the adsorption and reaction between the gases and sensor materials. Hence, it is very important to study the gas sensing performance of the different facets-exposed noble-metal nanoparticles. In this study, a set of shape-controlled Pd NPs have been prepared and loaded onto the ZnO nanorods, and the gas sensing performance of the Pd nanoparticle-loaded ZnO to 250 ppm of H has been detected. The results indicate that the cubic Pd NPs-loaded ZnO shows higher and faster sensing response to H than the octahedral and spherical Pd-loaded ZnO owing to the stronger adsorption of the H by cubic Pd NPs enclosed by (100) facets than the octahedral NPs enclosed by (111) facets. The cubic Pd NPs-loaded ZnO also exhibits better sensing selectivity and repeatability towards H.

Citing Articles

A sigh-performance hydrogen gas sensor based on Ag/Pd nanoparticle-functionalized ZnO nanoplates.

Nguyet T, Thanh Le D, Van Duy N, Xuan C, Ingebrandt S, Vu X RSC Adv. 2023; 13(19):13017-13029.

PMID: 37124013 PMC: 10132452. DOI: 10.1039/d3ra01436c.


Research Progress on Biomimetic Nanomaterials for Electrochemical Glucose Sensors.

Chi L, Zhang C, Wu X, Qian X, Sun H, He M Biomimetics (Basel). 2023; 8(2).

PMID: 37092419 PMC: 10123724. DOI: 10.3390/biomimetics8020167.


Ultralow detection limit and ultrafast response/recovery of the H gas sensor based on Pd-doped rGO/ZnO-SnO from hydrothermal synthesis.

Zhang X, Sun J, Tang K, Wang H, Chen T, Jiang K Microsyst Nanoeng. 2022; 8:67.

PMID: 35721374 PMC: 9203492. DOI: 10.1038/s41378-022-00398-8.


Effects of Chemical State of the Pd Species on H Sensing Characteristics of PdO/SnO Based Chemiresistive Sensors.

Qi T, Sun J, Yang X, Yan F, Zuo J Sensors (Basel). 2019; 19(14).

PMID: 31315234 PMC: 6679306. DOI: 10.3390/s19143131.