Improved ethanol gas sensing performances of a ZnO/CoO composite induced by its flytrap-like structure.

Improved ethanol gas sensing performances of a ZnO/CoO composite induced by its flytrap-like structure.

Xu, Keng;Yang, Li;Yang, Yong;Yuan, Cailei;
Physical chemistry chemical physics : PCCP 2017 Vol. 19 pp. 29601-29607
154
xu2017improvedphysical

Abstract

Nanocomposite materials with excellent receptor and transducer functions are promising in ameliorating their gas sensing properties. However, due to the abrupt changes of receptor and transducer functions when different components are combined together, structural engineering that considers both the receptor and transducer functions to design such desirable sensing materials still remains a great challenge. Here, a nanocomposite material composed of 1D ZnO nanorods and 3D CoO microspheres assembled by single-crystalline porous nanosheets has been designed, which was inspired by the high-efficiency receptor-transducer-response structure of venus flytraps. The as-designed ZnO/CoO composite exhibited high response (R/R = 125 to 100 ppm ethanol) which was 84 times and 8 times higher than those of CoO (R/R = 1.43) and ZnO (R/R = 15). The excellent sensing properties are ascribed to the as-designed flytrap-like structure which possesses a super receptor function from 1D ZnO with a large surface area, p-n heterojunctions with an amplified response signal, as well as excellent transducer functions from single-crystalline porous CoO with fast charge transport channels. This strategy provides us with new guidance on the exploration of high-performance gas sensors which could further extend to other bio-structures that are abundant in nature.

Citation

ID: 28782
Ref Key: xu2017improvedphysical
Use this key to autocite in SciMatic or Thesis Manager

References

Blockchain Verification

Account:
NFT Contract Address:
0x95644003c57E6F55A65596E3D9Eac6813e3566dA
Article ID:
28782
Unique Identifier:
10.1039/c7cp05228f
Network:
Scimatic Chain (ID: 481)
Loading...
Blockchain Readiness Checklist
Authors
Abstract
Journal Name
Year
Title
5/5
Creates 1,000,000 NFT tokens for this article
Token Features:
  • ERC-1155 Standard NFT
  • 1 Million Supply per Article
  • Transferable via MetaMask
  • Permanent Blockchain Record
Blockchain QR Code
Scan with Saymatik Web3.0 Wallet

Saymatik Web3.0 Wallet