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author:

Khan, M. (Khan, M..) [1] | Hayat, A. (Hayat, A..) [2] | Baburao, Mane, S.K. (Baburao, Mane, S.K..) [3] | Li, T. (Li, T..) [4] | Shaishta, N. (Shaishta, N..) [5] | Alei, D. (Alei, D..) [6] | Zhao, T.K. (Zhao, T.K..) [7] | Ullah, A. (Ullah, A..) [8] | Zada, A. (Zada, A..) [9] | Rehman, A. (Rehman, A..) [10] | Khan, W.U. (Khan, W.U..) [11]

Indexed by:

Scopus

Abstract:

Development of superior heterogeneous photocatalyst for hydrogen (H2) evolution with promising pollutant degradable capacity is a significant feature but then again thought-provoking for shaping the energy and environmental issues. In this regard, a photocatalytic H2 evolution using nano diamond (ND) semiconducting materials having pollutant degradable capacity for Rhodamine B dye (RhB) has been rarely reported and hence predicted to the sustainable energy. Productive characteristics such good chemical stability, super hardness, nanometer size, biocompatibility and thermal conductivity, ND is a capable and highly valuable powder physical material. Non-uniform and agglomeration dispersion spread of ND in different solvents are the main problems preventing ND from the wide-use in commercial applications. Upon 535 nm solar light excitation, the fabricated ND sample exhibit remarkable photocatalytic H2 production with a HER of about 400 μmol h−1 than pristine ND (197 μmol h−1). Additionally, this H2 generation dramatically enhances the quantum yield, indicating the H2 terminated sites work as electron reservoirs. Precisely, the kinetic constant pseudo-order of FND for photodegradation of RhB was higher as compared with pristine ND. As such, the results show an important step toward tailor-designed and explain the vital role of FND composites for the rational motifs of fruitful photocatalyst with effective pollutant degradable capability for future demand. © 2020 Hydrogen Energy Publications LLC

Keyword:

And hydrogen evolution rate (HER); Ball milling technique; Nano diamond; ND/Epoxy nanocomposite; Pollutant degradation

Community:

  • [ 1 ] [Khan, M.]School of Materials Science and Engineering, Northwestern Polytechnical University, Xian, 710072, China
  • [ 2 ] [Khan, M.]Department of Chemistry, University of Okara Punjab, Pakistan
  • [ 3 ] [Hayat, A.]State Key Laboratory of Photocatalysis on Energy and Environment, College of, Chemistry, Fuzhou University, Fuzhou, 350002, China
  • [ 4 ] [Baburao Mane, S.K.]School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou, 510006, China
  • [ 5 ] [Baburao Mane, S.K.]Department of Post-Graduate Studies and Research in Chemistry, Gulbarga University, Gulbarga, 585106, India
  • [ 6 ] [Li, T.]School of Materials Science and Engineering, Northwestern Polytechnical University, Xian, 710072, China
  • [ 7 ] [Shaishta, N.]Department of Post-Graduate Studies and Research in Chemistry, Gulbarga University, Gulbarga, 585106, India
  • [ 8 ] [Alei, D.]School of Materials Science and Engineering, Northwestern Polytechnical University, Xian, 710072, China
  • [ 9 ] [Zhao, T.K.]School of Materials Science and Engineering, Northwestern Polytechnical University, Xian, 710072, China
  • [ 10 ] [Ullah, A.]School of Materials Science and Engineering, Northwestern Polytechnical University, Xian, 710072, China
  • [ 11 ] [Zada, A.]Department of Chemistry, Abdul Wali Khan University, Mardan, Pakistan
  • [ 12 ] [Rehman, A.]School of Chemical Engineering, Northwest University, Xi'an, China
  • [ 13 ] [Khan, W.U.]State Key Laboratory of Optoelectronic Materials and Technologies, School of Materials Science and Engineering, Sun Yat-sen University, Guangzhou, 510275, China

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Source :

International Journal of Hydrogen Energy

ISSN: 0360-3199

Year: 2020

Issue: 53

Volume: 45

Page: 29070-29081

5 . 8 1 6

JCR@2020

8 . 1 0 0

JCR@2023

ESI HC Threshold:132

JCR Journal Grade:2

CAS Journal Grade:3

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count:

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 0

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