Enhancing efficiency of dye-sensitized solar cell using Mn or Ce doped and Co-doped ZnO photoanodes with lawsonia inermis natural dye
Physica Scripta, ISSN: 1402-4896, Vol: 99, Issue: 11
2024
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Article Description
In the present research paper, Mn (transition metal) and Ce (rare earth metal) doped and co-doped ZnO nanoparticles were synthesized using a cost-effective sol-gel technique. As synthesized samples were characterized using x-ray diffraction and field emission scanning electron microscope to examine the structure and morphology respectively. The optical properties were examined by UV-Visible and photoluminescence spectroscopic techniques. The synthesized samples were used as photoanode for the fabrication of dye-sensitized solar cell (DSSC). The utilization of a photoanode, containing Mn and Ce doped and co-doped in ZnO, in DSSC leads to a significant enhancement in photovoltaic conversion efficiency with natural dye lawsonia inermis. Different combinations of Mn or Ce doped and co-doped ZnO nanoparticles were used for testing their effectiveness as photoanode in DSSC. It was observed that the efficiency for Mn and Ce co-doped ZnO photoanode-based DSSC was found to be 0.2118%, which is approximately a 750% increase as compared to bare ZnO photoanode based DSSC. The enhancement in the efficiency of DSSCs was due to the formation of a blocking layer by Mn ions which helps to stop the flow of electrons backward and the broadening of the spectrum region with the help of Ce ions using up/down conversion process also helps to achieve higher efficiency. This enhancement in the efficiency of DSSC may be attributed to the synergic effect of Mn and Ce.
Bibliographic Details
http://www.scopus.com/inward/record.url?partnerID=HzOxMe3b&scp=85206001818&origin=inward; http://dx.doi.org/10.1088/1402-4896/ad7e5e; https://iopscience.iop.org/article/10.1088/1402-4896/ad7e5e; https://dx.doi.org/10.1088/1402-4896/ad7e5e; https://validate.perfdrive.com/9730847aceed30627ebd520e46ee70b2/?ssa=eb156442-d1fc-418a-a81c-605424076055&ssb=98209252157&ssc=https%3A%2F%2Fiopscience.iop.org%2Farticle%2F10.1088%2F1402-4896%2Fad7e5e&ssi=24934592-cnvj-4dc8-b7af-6501bc7b43be&ssk=botmanager_support@radware.com&ssm=57925763901896001710087406227476929&ssn=5c4bd113993f4785b8037c7fc31bea9873e16402f074-4cb6-43cc-bb4a7b&sso=9e9615d5-86644739f8a565717abf1dab6156934b75e8fb144fc148ae&ssp=24610693281728657899172905536519815&ssq=45568870936264863170475883523424395598572&ssr=MzQuMjM2LjI2LjMx&sst=com.plumanalytics&ssu=&ssv=&ssw=&ssx=eyJfX3V6bWYiOiI3ZjYwMDAwMTkwYjQzMC04NzFlLTRjOGEtODhjNS1hOTI5ZGQ5NTBhYzkxNzI4Njc1ODgzNDM1MzMzNDc5MjAyLTYxODRmZWE1YjllZGM5YWM3MTAwMiIsInV6bXgiOiI3ZjkwMDA1MjAyNTk2Ny04NzMxLTQ5ZGUtODY0OC1jY2U1NWI5ZTRiYWM1LTE3Mjg2NzU4ODM0MzYzMzM0NzkyMDEtODEwYWY5YWJkYTIyM2JkYjcwOTk5IiwicmQiOiJpb3Aub3JnIn0=
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