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Conformal zinc sulfide coating of vertically aligned ZnO nanorods by two-step hydrothermal synthesis on wide bandgap seed layers for lead-free perovskite solar cells.
Farhad, Syed Farid Uddin; Tanvir, Nazmul Islam; Bitu, Md Nur Amin; Hossain, Elius; Mamun, Md Al; Quddus, Md Saiful; Alam, Md Shaha; Moniruzzaman, Mohammad; Nandigana, Pardhasaradhi; Panda, Subhendu K.
Affiliation
  • Farhad SFU; Energy Conversion and Storage Research (ECSR), Industrial Physics Division (IPD), BCSIR Dhaka Laboratories, Dhaka 1205, Bangladesh.
  • Tanvir NI; Central Analytical and Research Facilities (CARF), BCSIR, Dhaka 1205, Bangladesh.
  • Bitu MNA; Bangladesh Council of Scientific and Industrial Research (BCSIR), Dhaka 1205, Bangladesh.
  • Hossain E; Energy Conversion and Storage Research (ECSR), Industrial Physics Division (IPD), BCSIR Dhaka Laboratories, Dhaka 1205, Bangladesh.
  • Mamun MA; Central Analytical and Research Facilities (CARF), BCSIR, Dhaka 1205, Bangladesh.
  • Quddus MS; Bangladesh Council of Scientific and Industrial Research (BCSIR), Dhaka 1205, Bangladesh.
  • Alam MS; Energy Conversion and Storage Research (ECSR), Industrial Physics Division (IPD), BCSIR Dhaka Laboratories, Dhaka 1205, Bangladesh.
  • Moniruzzaman M; Bangladesh Council of Scientific and Industrial Research (BCSIR), Dhaka 1205, Bangladesh.
  • Nandigana P; Energy Conversion and Storage Research (ECSR), Industrial Physics Division (IPD), BCSIR Dhaka Laboratories, Dhaka 1205, Bangladesh.
  • Panda SK; Atomic Energy Center, Bangladesh Atomic Energy Commission (BAEC), Dhaka 1000, Bangladesh.
Nanotechnology ; 35(38)2024 Jul 04.
Article in En | MEDLINE | ID: mdl-38838651
ABSTRACT
Vertically aligned ZnO nanorods (NRs) were grown hydrothermally on the wide bandgap (∼3.86 - 4.04 eV) seed layers (SLs) of grain size ∼162 ± 35 nm, prepared using ball-milled derived ZnO powder. The synthesized ZnO NRs were further decorated with ZnS nanocrystals to achieve a ZnO NR-ZnS core-shell (CS)-like nano-scaffolds by a subsequent hydrothermal synthesis at 70 °C for 1 h. UV-Vis-NIR spectroscopy, x-ray diffractometry (XRD), Raman spectroscopy and Field emission scanning electron microscopy (FESEM) coupled with Energy dispersive x-ray spectroscopy (EDX) analyses confirmed the formation of ZnS atop the vertically aligned ZnO NR arrays of ∼1.79 ± 0.17µm length and ∼165 ± 27 nm diameter. Transmission electron microscopy (TEM)/EDX analyses revealed that vertically aligned ZnO NRs (core dia. ∼181 ± 12 nm) arrays are conformally coated by an ultrathin ZnS (∼25 ± 7 nm) shell layer with a preferential ZnS{111}/ZnO{10-10}-like partial epitaxy. The ZnO NRs exhibited a sharp band edge near ∼384 nm having optical bandgap energy (Eg) of ∼3.23 eV. However, the ZnO NR-ZnS CS exhibited double absorption bands atEg∼ 3.20 eV (ZnO-core) andEg∼ 3.78 eV (ZnS-shell). The ZnS{111}/ZnO{10-10}-nano-scaffolds could be utilized to facilitate the enhanced absorption of UV photons as well as the radial junction formation between the Pb-free perovskite absorber and ZnS/ZnO NRs layers.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Nanotechnology Year: 2024 Document type: Article Affiliation country: Bangladesh

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Nanotechnology Year: 2024 Document type: Article Affiliation country: Bangladesh