| Literature DB >> 26334564 |
Sambhaji S Bhande1, Rohan B Ambade2, Dipak V Shinde3, Swapnil B Ambade2, Supriya A Patil3, Mu Naushad4, Rajaram S Mane1,3, Z A Alothman4, Soo-Hyoung Lee2, Sung-Hwan Han3.
Abstract
Here we report functionalized multiwalled carbon nanotubes (f-MWCNTs)-CdSe nanocrystals (NCs) as photosensitizer in photoelectrochemical cells, where f-MWCNTs were uniformly coated with CdSe NCs onto SnO2 upright standing nanosheets by using a simple electrodeposition method. The resultant blended photoanodes demonstrate extraordinary electrochemical properties including higher Stern-Volmer constant, higher absorbance, and positive quenching, etc., caused by more accessibility of CdSe NCs compared with pristine SnO2-CdSe photoanode. Atomic and weight percent changes of carbon with f-MWCNTs blending concentrations were confirmed from the energy dispersive X-ray analysis. The morphology images show a uniform coverage of CdSe NCs over f-MWCNTs forming a core-shell type structure as a blend. Compared to pristine CdSe, photoanode with f-MWCNTs demonstrated a 257% increase in overall power conversion efficiency. Obtained results were corroborated by the electrochemical impedance analysis. Higher scattering, more accessibility, and hierarchical structure of SnO2-f-MWCNTs-blend-CdSe NCs photoanode is responsible for higher (a) electron mobility (6.89 × 10(-4) to 10.89 × 10(-4) cm(2) V(-1) S(1-)), (b) diffusion length (27 × 10(-6)), (c) average electron lifetime (32.2 ms), and transit time (1.15 ms).Entities:
Keywords: SnO2−CdSe; SnO2−CdSe-MWCNTs; dye-sensitized solar cell; functionalized MWCNTs; photoanodes
Year: 2015 PMID: 26334564 DOI: 10.1021/acsami.5b05385
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229