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Muhammad Shahid Nadeem 简介

博士后简介

Muhammad Shahid Nadeem






Male

毕业院校

The Islamia University of Bahawalpur, Pakistan

入站时间

December 2023 to December 2025


个人简介

Muhammad Shahid Nadeem completed his degree of Doctorate from Institute of physics,

  The Islamia University of Bahawalpur, Pakistan. Currently he is working as postdoc Researcher

at Henan university of technology China. Recently according to Elsevier, and Stanford ranking

  he is nominated as top 2% scientist all over the world. He published more than 50 research articles

  in peer-reviewed international journals related to ‘Photochemistry, Photocatalysis, Antibacterial,

  water-splitting, and Energy Storage Devices. He has a total citation >2100 with h-index > 29,

i10-index > 46. He would like to work in a well-reputed organization among the best professionals

  and in a challenging atmosphere that offers enormous chances of growth and further facilitates

  to his abilities to help the organization to reach its strategic goals.

  Editorial Board Experience

Working as Reviewer in Multidisciplinary Digital Publishing Institute (MDPI).

Working as Reviewer in different Elsevier journals i.e. Chemical Engineering journal,

Ceramic international, Journal of Energy storage etc.

Working as Youth Editorial Committee Member in Advanced Fiber Materials.

Working as Editorial Board Member of journal Characterization and Application of Nanomaterials

主要研究方向

Nanomaterials and Heterostructured Nanocomposites; Photochemistry; Photocatalysis; Antibacterial, Thin film, and Energy Storage Device.

代表性成果

1. Hydrothermally derived co, Ni co-doped ZnO nanorods; structural, optical, and morphological study, Optical Materials, 111 (2021) 110606,

2. Enhancement in the photocatalytic and antimicrobial properties of ZnO nanoparticles by structural variations and energy bandgap tuning through Fe and Co co-doping, Ceramics International, 47 (2021) 11109–11121

3. Energylevels wellmatched direct Zscheme ZnNiNdO/CdS heterojunction for elimination of diverse pollutants from wastewater and microbial disinfection, 29-10-2021, Environmental Science and Pollution Research (ESPR), (IF=5.19).

4. Facile synthesis of sunlight driven photocatalysts Zn0.9Ho0.05M0.05O (M = Pr, Sm, Er) for the removal of synthetic dyes from wastewater, 34 (2022) 102376, Surfaces and Interfaces

5. Facile synthesis of PANI and rGO supported Y/Pr co‑doped ZnO: boosted solar light‑driven photocatalysis, (2023) 129:450 Applied Physics A

6. Synergistic photocatalytic properties of Fullerene (C60) anchored V/Cu dual-doped NiO nanocomposites for water disinfection. Materials Science & Engineering B 297 (2023) 116705

7. Effect of Co/Nd co-doping on the structural, optical, and morphological properties of ZnO nanorods grown on Silicon Substrate Si (100) for photocatalysis, Journal of Luminescence.

8. Sr-doped ZnO thin film on a silicon substrate (100) grown by sol-gel method: Structural and optical study Optical Materials

9. Zn0.9Ce0.05M0.05O (M = Er, Y, V) nanocrystals: Structural and energy bandgap engineering of ZnO for enhancing photocatalytic and antibacterial activity, Ceramic International, 46 (2020) 14369–14383

10. Multifunctional properties of Zn0.9Mn0.05M0.05O (M = Al, Bi, Sr, Ag) nanocrystals structural and optical study: enhance sunlight driven photocatalytic activity, Ceramics International.46 (2020) 22345–22366, (IF=4.527).

11. Rare earth metal co-doped Zn0.9La0.05M0.05O (M = Yb, Sm, Nd) nanocrystals; energy gap tailoring, structural, photocatalytic and antibacterial studies, Materials Science in Semiconductor Processing, 122 (2021) 105485, (IF=3.927).

12. Novel direct dual-Z-scheme ZnO-Er2O3-Nd2O3@reduced graphene oxide heterostructure nanocomposite: synthesis, characterization and superior antibacterial and photocatalytic activity, Materials Chemistry and Physics, 253 (2020) 123249,

13. Synthesis, characterization, and antibacterial study of novel Mg0.9Cr0.05M0.05O (M = Co, Ag, Ni) nanocrystals, Physica B: Physics of Condensed Matter, 26 November 2020, 412555

14. Structural, optical, electrical, and morphological studies of rGO anchored direct dual-Z-scheme ZnO-Sm2O3-Y2O3 heterostructured nanocomposite: An efficient photocatalyst under sunlight, Solid State Sciences,  106, August 2020, 106307,

15. Novel photocatalyst and antibacterial agent; direct dual Z-scheme ZnO-CeO2-Yb2O3 heterostructured nanocomposite, Solid State Sciences, 109 (2020) 106446

16. Sunlight-induced photocatalytic degradation of various dyes and bacterial inactivation using CuO-MgO-ZnO nanocomposite, Environmental Science and Pollution Research (ESPR),

17. Sol-gel synthesis of Cu0.9Zn0.05M0.05O (M = Cr, Co, Cd) nanocrystals for removal of pollutant dyes and bacterial inactivation, Journal of Materials Science: Materials in Electronics, (2021) 32:14437–14455

18. Facile synthesis of Cr/Co co-doped CdO nanowires for photocatalytic, antimicrobial, and super capacitor applications, Journal of Alloys and Compounds, 885 (2021) 160885,

19. Fabrication of Dual Z-scheme TiO2-WO3-CeO2 heterostructured nanocomposite with enhanced photocatalysis, antibacterial, and electrochemical performance, Journal of Alloys and Compounds, 898 (2022) 162779

20. Enhancement in carrier separation of ZnO-Ho2O3-Sm2O3 hetrostuctured nanocomposite with rGO and PANI supported direct dual Z-scheme for antimicrobial inactivation and sunlight driven photocatalysis, Advanced Powder Technology, 32 (2021), page 3770–3787

21. Facile synthesis and characterization of conducting polymer-metal oxide-based core-shell PANI-Pr2O-NiO-Co3O4 nanocomposite: as electrode material for super capacitor, Ceramics International, 47, 13, 18497-18509,

22. Highly efficient novel tri-phase TiO2-Y2O3-V2O5 nanocomposite photocatalyst and antibacterial agent: Synthesis, structural, electrical, and optical studies, Nanostructured in Chemistry,  

23. Synthesis of highly efficient direct dual Z-scheme ZnO-V2O5-WO3 hetero structured nanocomposite for degradation of dyes under sunlight and antimicrobial agent, Materials Chemistry and Physics, 263 (2021) 124372.

24. Multi metal oxide NiO-Fe2O3-CdO nanocomposite-synthesis, photocatalytic and antibacterial properties, Applied Physics A, (2020) 126:588,

25. Facile synthesis of novel PANI covered Y2O3-ZnO nanocomposite: A promising electrode material for super capacitor Solid State Sciences, 128 (2022) 106883 (IF=3.059).

26. Facile synthesis of nanosphere like rare-earth/transition metal dual-doped TiO2 nanostructure for application as super capacitor electrodes material. Journal of Material Science,

27. Surfactant-assisted facile synthesis of petal-nanoparticle interconnected nanoflower like NiO nanostructure: boosted performance as supercapacitor electrodes material. Material science and engineering (B) 284 (2022) 115900

28. Facile synthesis of rare earth metal dual-doped Pr2O3 nanostructures: Enhanced electrochemical water-splitting and antimicrobial properties Ceramics International 48 (2022) 19150–19165

29. Superior electrochemical performance of neodymium oxide based Nd2CeMO3 (M = Er, Sm, V) nanostructures for super capacitor application Journal of electroanalytical chemistry 920 (2022) 116614

30. Enhanced photocatalytic, antibacterial, and electrochemical properties of CdO-based nanostructures by transition metals co-doping. Advanced Powder Technology, 33 (2022) 103451,

31. Enhanced sunlight-absorption of Fe2O3 covered by PANI for the photodegradation of organic pollutants and antimicrobial inactivation. Advanced Powder Technology 33 (2022) 103708

32. Transition metals doped SnO2 and graphene oxide (GO) supported nanocomposites as efficient photocatalysts and antibacterial agents. Environmental Science and Pollution Research

33. Dual Z-scheme core-shell PANI-CeO2-Fe2O3-NiO heterostructured nanocomposite for dyes remediation under sunlight and bacterial disinfection  Environmental Research 215 (2022) 114140

34. Facile synthesis of Halide Perovskite-polyaniline (KCuCl3/PANI) nanocomposite towards effective super capacitor electrode material. J Mater Sci: Mater Electron,

35. Dual-functional fullerene supported NiO core-shell nanocomposite: Efficient electrocatalyst for OER and photocatalyst for MB dye degradation Material Chemistry and Physics,

36. Fullerene trigged energy storage and photocatalytic ability of La2O3-ZnO@C60 core-shell nanocomposite. 288 (2023) 116151 Materials Science and Engineering B

37. Dual-functional CeO2@C60 core-shell nanocomposite: Efficient electrocatalyst for oxygen evolution reaction and photocatalyst for P-nitroaniline elimination.  Ceramic International

38. Facile synthesis of fullerene-C60 and rGO supported KCdCl3 based Halide Perovskite nanocomposites towards effective electrode material for supercapacitor. Journal of Applied Electrochemistry,

39. Multifunctional dual Z-scheme heterostructured Sm2O3-WO3-La2O3 nanocomposite, enhanced electrochemical, photocatalytic, and antibacterial properties. Advanced Powder Technology

40. Electrochemical characteristics evaluation of neodymium doped cerium sulfide nanocomposites with fullerene (CeNdS/C60) as an efficient OER material. Energy & Fuels (ACS)

41. Boosted natural sunlight driven photodegradation of organic dyes using rGO anchored Pr/Cu dual-doped ZnO nanocomposites: Characterization and mechanistic insight. 136 (2023) 113397 Optical materials.

42. Fabrication and mechanistic insight of rGO supported Mo/Cu dual-doped NiO nanocomposite for elimination of diverse pollutants Applied Nanoscience

43. Tunability of physical properties of NiO by introduction of rare earth metal (Y, Ho) dual-doping for natural sunlight driven photocatalysis. J Mater Sci: Mater Electron,

44. Fabrication of fullerene-supported La2O3–C60nanocomposites: dual-functional materials for photocatalysis and super capacitor electrodes Physical Chemistry Chemical Physics (RSC)

45. Rational design and electrochemical validation of CeO2-Nd2O3/rGO ternary nanocomposites as an efficient material for super capacitor electrodes Journal of Applied Electrochemistry

46. Scalable synthesis of MOFs-derived ZnO/C nanohybrid: Efficient electrocatalyst for OER in alkaline medium. Journal of Materials Science journal of Applied Electrochemistry,

47. Oxygen vacancies generation in CeO2 via Y/Nd co-doping with accelerated charge separation by decorating on rGO sheets for sunlight-driven photodegradation of hazardous dyes. Ceramics International

48. Electrochemical behavior of V/Ce co-doped carbon shell-coated NiO nanocomposite for alkaline OER and supercapacitor applications. Journal of Energy Storage,

49. Enhanced charge carriers separation/transportation via S-scheme ZnCeS–ZnWO heterostructure nanocomposite for photodegradation of synthetic dyes under sunlight. Materials Chemistry and Physics

50. Scalable synthesis of MOF-derived Nd2O3@C and V2O5@C nanohybrid: Efficient 2 electrocatalyst for OER in alkaline medium Fuel,

51. Controlled synthesis of rGO supported rare earth metal oxides based CeO2-Y2O3-Nd2O3/rGO quaternary nanocomposites: Efficient bi-functional electrocatalyst for OER/HER in alkaline medium. Journal of Energy Storage

52. Boosted charge separation via Ce2S3 over dual Z-scheme ZnO-Ce2S3-MnO2 core double shell nanocomposites for the degradation of diverse dyes pollutants. Environmental Research

53. Perovskite oxide-based La2Cu0.90Mo0.1O4/rGO nanocomposites for Photodegradation of diverse pollutants under natural sunlight; Applied Nanoscience.

联系方式:

Google Scholar: https://scholar.google.com/citations?hl=en&user=TZSvmwsAAAAJ

ORCID: https://orcid.org/0000-0002-4821-6041

Web of Science: https://www.webofscience.com/wos/author/record/HDO-6561-2022

Research gate: https://www.researchgate.net/profile/Muhammad-Nadeem-48

E-mail:   shahid_nadeem@haut.edu.cn, shahidnadeem2016@gmail.com  

Cell No:     +18623717387, +923087473406

WeChat ID: Shahid_Nadeem