Designing novel morphologies of l-cysteine surface capped 2D covellite (CuS) nanoplates to study the effect of CuS morphologies on dye degradation rate under visible light

Author:

Iqbal Shahid1234ORCID,Bahadur Ali56789ORCID,Anwer Shoaib10111213,Shoaib Muhammad14151617ORCID,Liu Guocong1234,Li Hao1234,Raheel Muhammad14181917,Javed Mohsin1420212217,Khalid Bilal14232417

Affiliation:

1. School of Chemistry and Materials Engineering

2. Huizhou University

3. Huizhou 516007

4. China

5. Department of Transdisciplinary Studies

6. Graduate School of Convergence Science and Technology

7. Seoul National University

8. Seoul

9. South Korea

10. Department of Mechanical Engineering

11. Khalifa University

12. Abu Dhabi

13. United Arab Emirates

14. Department of Chemistry

15. Government Postgraduate College Samanabad

16. 38000 Faisalabad

17. Pakistan

18. Balochistan University of Information Technology, Engineering and Management Sciences

19. Quetta

20. School of Science

21. University of Management & Technology

22. Lahore-54770

23. University of Okara

24. Renala Khurd, Okara

Abstract

Novel CuS@l-Cys NPs are designed by a hydrothermal route. The effects of synthetic parameters on the morphologies of CuS@l-Cys NPs were investigated. CuS@l-Cys NPs exhibit an enhanced dye degradation rate under visible light.

Funder

National Research Foundation

National Natural Science Foundation of China

Natural Science Foundation of Guangdong Province

Department of Education of Guangdong Province

Huizhou University

Publisher

Royal Society of Chemistry (RSC)

Subject

Condensed Matter Physics,General Materials Science,General Chemistry

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