Compositional engineering of the pi-conjugated small molecular VOPcPhO : Alq3 complex to boost humidity sensing

Author:

Fatima Noshin123,Aziz Fakhra45678,Ahmad Zubair9101112ORCID,Najeeb M. A.9101112,Azmeer M. I.45678,Karimov Kh. S.1331415,Ahmed M. M.123,Basheer S.45678,Shakoor R. A.9101112,Sulaiman K.45678

Affiliation:

1. Department of Electrical Engineering

2. Capital University of Science and Technology

3. Pakistan

4. Low Dimensional Material Research Center

5. Department of Physics

6. University of Malaya

7. Kuala Lumpur 50603

8. Malaysia

9. Center for Advanced Materials (CAM)

10. Qatar University

11. Doha

12. Qatar

13. Ghulam Ishaq Khan Institute of Engineering Sciences and Technology

14. Centre for Innovative Development of Science and Technologies of Academy of Sciences

15. Tajikistan

Abstract

This study exhibits a solution-processed organic semiconductor humidity sensor based on vanadyl 2,9,16,23-tetraphenoxy-29H,31H-phthalocyanine (VOPcPhO), tris-(8-hydroxy-quinoline)aluminum (Alq3), and their composites.

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemical Engineering,General Chemistry

Reference32 articles.

1. Recent achievements in miniaturised humidity sensors—a review of transduction techniques

2. F. Gutman and L. E.Lyons, Organic semiconductors, Part A, ed. E. Robert, Krieger Publishing Company, Malabar, Florida, 1981

3. F. Gutman , H.Keyzer and L. E.Lyons, Organic semiconductors, Part B, ed. E. Robert, Krieger Publishing Company, Malabar, Florida, 1983

4. Humidity sensor based on electrospun MEH-PPV:PVP microstructured composite

5. A water durable resistive humidity sensor based on rigid sulfonated polybenzimidazole and their properties

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