Autors: Svensson F.G., Djurberg E., Yan Y., Kim S., Henych J., Tolasz J., Dappozze F., Parola S., Guillard C., Stefanov, B. I., Österlund L.
Title: Photo-deposition of Cu2O on pre-annealed ZnO nanorods yields pn-type heterostructures with enhanced photocatalytic activity
Keywords:

Abstract: This journal is However, achieving controlled deposition of copper oxide nanoparticles on ZnO nanorods remains challenging, particularly in forming well-defined interfaces. Here, we report a UV-assisted photo-deposition method using [Cu(EDTA)]2− complexes to predominantly form Cu2O nanoparticles on sea-urchin-like ZnO nanorods that either were used as-prepared or subjected to systematic post-heating treatments. The structural, chemical, and electronic properties of the resulting pn-type heterostructures were characterized by X-ray diffraction, electron microscopy, and photoelectron and photoluminescence spectroscopy, while phenol photodegradation products were quantified by HPLC. In contrast to the as-prepared ZnO nanorods, annealing treatment prior to Cu2O deposition produces well-developed Cu2O–ZnO interfaces, yielding pn-type heterostructures with enhanced photocatalytic degradation of phenol under UVA illumination. Our results indicate improved interfacial charge transfer, attributed to reduced lattice defects and removal of surface contaminants through annealing. These findings demonstrate that substrate surface preparation combined with atom-by-atom photo-deposition of chelated copper complexes provides a straightforward route for optimizing heterostructure catalysts with improved interfacial properties and enhanced photocatalytic activity.

References

  1. Suresh R. Gnanasekaran L. Rajendran S. Soto-Moscoso M. Chen W. H. Show P. L. Khoo K. S. Environ. Sci. Technol. 2023 31 103149
  2. Morshedy A. S. El-Fawal E. M. Zaki T. El-Zahhar A. A. Alghamdi M. M. El Naggar A. M. A. Inorg. Chem. Commun. 2024 163 112307
  3. Al-Mohamadi H. Awad S. A. Sharma A. K. Fayzullaev N. Tavara-Aponte A. Chiguala-Contreras L. Amari A. Rodrigues B. C. Tahoon M. A. Esmaeili H. Catalysts 2024 14 420
  4. Madronich S., in Environmental UV Photobiology, ed. A. R. Young, J. Moan J. Moan, L. O. Björn L. O. Björn and W. Nultsch W. Nultsch, Springer, New York, 1993
  5. Teoh W. Y. Scott J. A. Amal R. J. Phys. Chem. Lett. 2012 3 629 639
  6. Mishra R. Bera S. Chatterjee R. Banerjee S. Bhattacharya S. Biwas A. Mallick S. Roy S. Appl. Surf. Sci. Adv. 2022 9 100241
  7. Das S. Srivastava V. C. Nanotechnol. Rev. 2018 7 267 282
  8. Liu J. X. Wang H. Wu H. Yang Y. Wang C. Wang Q. Jia B. Zheng J. J. Mater. Chem. A 2024 12 20838
  9. Sun S. Nanoscale 2015 7 10850
  10. Marschall R. Adv. Funct. Mater. 2014 24 2421 2440
  11. Luo K. Hu W. Wei J. Zhang Q. Wu Z. Li D. Miao F. Huang Y. Xu M. Ma J. Li C. Chen G. Han R. Wang X. L. Cui X. Ruterana P. Phys. Chem. Chem. Phys. 2021 23 10768
  12. Wang Y. Li S. Shi H. Yu K. Nanoscale 2012 4 7817
  13. Zhu L. Li H. Liu Z. Xie Y. Xiong D. J. Phys. Chem. C 2018 122 9531 9539
  14. Dastider A. Saha H. Anik M. J. F. Jamal M. Billah M. M. RCS Adv. 2024 14 11677 11693
  15. Özgur U. Alivov Y. I. Liu C. Teke A. Reshchikov M. A. Dogan S. Avrutin V. Cho S. J. Morkoc H. J. Appl. Phys. 2005 98 041301
  16. Zhang S. B. Wei S. H. Zunger A. Phys. Rev. B: Condens. Matter Mater. Phys. 2001 63 075205
  17. Liu Y. Chen C. Valdez J. Meira D. M. He W. Wang Y. Harnagea C. Lu Q. Guner T. Wang H. Liu C. H. Zhang Q. Huang S. Yurtsever A. Chaker M. Ma D. Nat. Commun. 2021 12 1231
  18. Saravanan R. Karthikayan S. Gupta V. K. Sekaran G. Narayanan V. Stephen A. Mater. Sci. Eng., C 2013 33 91 98
  19. Li B. Wang Y. Superlattices Microstruct. 2010 47 615 623
  20. Abebe B. Tsegaye D. Sori C. Prasad R. C. K. R. Murthy H. C. A. ACS Omega 2023 8 9597 9606
  21. Muzakki A., Shabrany H. and Saleh R., The 3rd International Conference On Advanced Materials Science And Technology (Icamst), 2016, vol. 1725, p. 020051
  22. Kuld S. Thorhauge M. Falsig H. Elkjaer C. F. Helvig S. Chorkendorff I. Sehested J. Science 2016 352 969 974
  23. Beck A. Newton M. A. Zabilskiy M. Rzepka P. Willinger M. G. van Bokhoven J. A. Angew. Chem., Int. Ed. 2022 61 e202200301
  24. Montero J. A. Welearegay T. Stopfel H. Dedova T. Acik I. O. Österlund L. RCS Adv. 2021 11 10224
  25. Okazaki M. Wang Y. A. Yokoi T. Maeda K. J. Phys. Chem. C 2019 123 10429 10434
  26. Butburee T. Papasara K. Hirunsit P. Sun Z. Tang Q. Khemthong P. Sangkhun W. Thongsuwan W. Kumnorkaew P. Wang H. Faungnawkij K. J. Mater. Chem. A 2019 7 8156
  27. Clarizia L. Vitiello G. Vadell R. B. Sa J. Marotta R. Somma I. D. Andreozzi R. Luciani G. Int. J. Mol. Sci. 2023 24 2004
  28. Wu G. Guan N. Li L. Catal. Sci. Technol. 2011 1 601 608
  29. Djokic S. S. and Magagnin L., Metallization of semiconductors and nonconductive surfaces from aqueous solutions, Springer, New York, 2014
  30. Baran T. Visivile A. Busch M. He X. Wojtyla S. Rondinini S. Minguzzi A. Vertova A. Molecules 2021 26 7271
  31. Venev P., Stefanov B. I., Milusheva V., Tzaneva B. and Videkov V., Proc. 12th National Conference with International Participation “Electronica 2021”, 2021
  32. Stefanov B. I. Milusheva V. Kolev H. G. Tzaneva B. Catal. Sci. Technol. 2022 13 7027
  33. Sliem M. A. Hikov T. Li Z. A. Spasova M. Farle M. Schmidt D. A. Havenith-Newen M. Fischer R. A. Phys. Chem. Chem. Phys. 2010 12 9858 9866
  34. Chen Y. Zhao H. Liu B. Yang H. Appl. Catal., B 2015 163 189 197
  35. Menagen G. Macdonald J. E. Shemesh Y. Popov I. Banin U. J. Am. Chem. Soc. 2009 131 17406 17411
  36. Law M. Greene L. E. Johnson J. C. Saykally R. Yang P. Nat. Mater. 2005 4 455 459
  37. McIntyre N. S. Cook M. G. Anal. Chem. 1975 47 2208 2213
  38. Park E. H. Jung J. Chung H. H. Chemosphere 2006 64 432 436
  39. Svensson F. G. Djurberg E. Kim S. Westin G. Österlund L. Langmuir 2025 41–42 28399 28410
  40. Kwiatkowski A. Smulko J. Drozdowska K. Österlund L. Welearegay T. Sol. Energy Mater. Sol. Cells 2024 273 112940
  41. Frankcombe T. J. Liu Y. Chem. Mater. 2023 35 5468 5474
  42. Soltanmohammadi M. Spurio E. Gloystein A. Luches P. Nilius N. Phys. Status Solidi A 2023 220 2200887
  43. Kumar N. Parui S. S. Limbu S. Mahato D. K. Tiwari N. Chauhan R. N. Mater. Today: Proc. 2021 41 237 241
  44. Thyr J. Montero J. Österlund L. Edvinsson T. ACS Nanosci. Au 2021 2 128 139
  45. Wang J. Fan X. M. Wu D. Z. Dai J. Liu H. Liu H. R. Zhou Z. W. Appl. Surf. Sci. 2011 258 1797 1805
  46. Mahrsi M. I. Chouchene B. Gries T. Carre V. Medjahdi G. Ayari F. Balan L. Schneider R. J. Environ. Chem. Eng. 2024 12 113072
  47. Turki A. Guillard C. Dappozze F. Ksibi Z. Berhault G. Kochkar H. Appl. Catal., B 2015 163 404 414
  48. Fang J. Fan H. Ma Y. Wang Z. Chang Q. Appl. Surf. Sci. 2015 332 47 54
  49. Flores N. M. Pal U. Galeazzi R. Sandoval A. RSC Adv. 2014 4 41099
  50. Giannakoudakis D. A. Arcibar-Orozco J. A. Bandosz T. J. Appl. Catal., B 2015 174 96 104

Issue

RSC Applied Interfaces, pp. 1046-1056, 2026, United Kingdom, https://doi.org/10.1039/d5lf00398a

Copyright The Royal Society of Chemistry

Вид: статия в списание, публикация в издание с импакт фактор, публикация в реферирано издание, индексирана в Scopus