Author:
Zhu Ye,Yang Li,Guo Shenghui,Hou Ming,Ma Yanjia
Abstract
In this study, morphogenetic-based Sn/SnO2 graded-structure composites were created by synthesizing two-dimensional SnO sheets using a hydrothermal technique, self-assembling into flower-like structures with an average petal width of roughly 3 um. The morphology and structure of the as-synthesized samples were characterized by utilizing SEM, XRD, XPS, etc. The gas-sensing characteristics of gas sensors based on the flower-like Sn/SnO2 were thoroughly researched. The sensor displayed exceptional selectivity, a rapid response time of 4 s, and an ultrahigh response at 250 °C (Ra/Rg = 17.46). The excellent and enhanced ethanol-gas-sensing properties were mainly owing to the three-dimensional structure and the rise in the Schottky barrier caused by the in situ production of tin particles.
Funder
Yunnan Province Science and Technology Major Project for Materials Genetic Engineering of Rare and Precious Metal
Science Research Foundation of Yunnan Provincial Education Department
Sichuan Science and Technology Program
Subject
General Materials Science
Cited by
6 articles.
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