Development of hydrophobic reduced graphene oxide as a new efficient approach for photochemotherapy

Author:

Mousavi Seyyed Mojtaba123,Low Foo Wah4567,Hashemi Seyyed Alireza891011,Samsudin Nurul Asma4567,Shakeri Mohammad4567,Yusoff Yulisa4567,Rahsepar Mansoor1213141516,Lai Chin Wei1718192021ORCID,Babapoor Aziz1222316,Soroshnia Sadaf1222316,Goh Su Mei1222316,Tiong Sieh Kiong24567,Amin Nowshad4567

Affiliation:

1. Department of Chemical Engineering

2. National Taiwan University of Science and Technology

3. Taiwan

4. Institute of Sustainable Energy

5. Universiti Tenaga Nasional (@The Energy University)

6. 43000 Kajang

7. Malaysia

8. Department of Mechanical Engineering

9. Center for Nanofibers and Nanotechnology

10. National University of Singapore

11. Singapore

12. Department of Materials Science and Engineering

13. School of Engineering

14. Shiraz University

15. Shiraz

16. Iran

17. Nanotechnology & Catalysis Research Centre

18. Level 3, Block A

19. Institute for Advanced Studies Building

20. University of Malaya

21. 50603 Kuala Lumpur

22. University of Mohaghegh Ardabili (UMA)

23. Ardabil

24. College of Engineering

Abstract

rGO of QD-rGO nanocomposite could absorb and convert into heat when harvested under NIR radiation, resulting cell death with reduction of fluorescence.

Funder

Universiti Tenaga Nasional

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemical Engineering,General Chemistry

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