The impact of surface Cu2+ of ZnO/(Cu1−xZnx)O heterostructured nanowires on the adsorption and chemical transformation of carbonyl compounds

Author:

Liu Jiangyang12345ORCID,Nagashima Kazuki12345ORCID,Nagamatsu Yuki6785,Hosomi Takuro12345ORCID,Saito Hikaru6785,Wang Chen6785,Mizukami Wataru91011512,Zhang Guozhu12345,Samransuksamer Benjarong12345,Takahashi Tsunaki12345ORCID,Kanai Masaki6785,Yasui Takao91011513ORCID,Baba Yoshinobu13214155,Yanagida Takeshi12345

Affiliation:

1. Department of Applied Chemistry

2. Graduate School of Engineering

3. The University of Tokyo

4. Bunkyo-ku

5. Japan

6. Institute for Materials Chemistry and Engineering

7. Kyushu University

8. Kasuga

9. Japan Science and Technology Agency (JST)

10. PRESTO

11. Saitama

12. Center for Quantum Information and Quantum Biology

13. Department of Biomolecular Engieering

14. Nagoya University

15. Nagoya

Abstract

Unexpected features of surface Cu2+ on ZnO/(Cu1−xZnx)O nanowires for molecular transformation and electrical sensing of carbonyl compounds were found.

Funder

Japan Society for the Promotion of Science

Japan Science and Technology Corporation

Japan Association for Chemical Innovation

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemistry

Reference42 articles.

1. V. C. Corberán , V.Rives and V.Stathopoulos , Advanced Nanomaterials for Catalysis and Energy , ed. V. A. Sadykov , Elsevier , Amsterdam , 2019 , pp. 227–293

2. V. Krivetskiy , M.Rumyantseva and A.Gaskov , Metal Oxide Nanomaterials for Chemical Sensors , ed. M. A. Carpenter , S. Mathur and A. Kolmakov , Springer , New York , 2013 , pp. 69–115

3. Acidity Scale for Metal Oxides and Sanderson's Electronegativities of Lanthanide Elements

4. Current Understanding of the Fundamental Mechanisms of Doped and Loaded Semiconducting Metal-Oxide-Based Gas Sensing Materials

5. Hybridization of Zinc Oxide Tetrapods for Selective Gas Sensing Applications

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