Please use this identifier to cite or link to this item: http://hdl.handle.net/10603/421941
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dc.coverage.spatialInvestigation on semiconductor quantum dots as sensitizer for solar cell applications
dc.date.accessioned2022-12-06T05:47:15Z-
dc.date.available2022-12-06T05:47:15Z-
dc.identifier.urihttp://hdl.handle.net/10603/421941-
dc.description.abstractThe demand for electric energy is rapidly increasing due to increasing world population along with rising environmental issues resulting from burning of fossil fuels Hence there is urging need to develop an alternate technology for generating electric energy using an ecofriendly and clean renewable sources Photovoltaic PV technology is an efficient technology photoelectric effect which is based on converting light to electricity Silicon dominates the PV industries since more than 85 of the solar cells are made from Si Highly expensive and complicated fabrication techniques deprived PV technology and led to development of simple less expensive nanotechnology based novel solar cells like sensitized solar cells Quantum dot sensitized solar cells are most prominent and attractive technology using semiconductor Quantum Dots QDs as sensitizers Unique properties exhibited by QDs such as size dependent electronic structure large extinction coefficients and multiple exciton generation render them attractive candidates as photon harvesters A strategy to effectively harvest solar energy using QDSSC is to do a state of art research focussing on novel QDs and advanced photoelectrode design with proper band alignment of each layers of QDSSC Recognition and development of QDSSC using new QD material and optimized cell components is a new platform to the researchers in order to develop an efficient solar cell newline
dc.format.extentxxiii, 168p
dc.languageEnglish
dc.relationp.143-167
dc.rightsuniversity
dc.titleInvestigation on semiconductor quantum dots as sensitizer for solar cell applications
dc.title.alternative
dc.creator.researcherArchana T
dc.subject.keywordPhysical Sciences
dc.subject.keywordMultidisciplinary
dc.subject.keywordNanoscience and Nanotechnology
dc.subject.keywordThe demand for electric energy is rapidly increasing due to increasing world population along with rising environmental issues resulting from burning of fossil fuels Hence there is urging need to develop an alternate technology for generating electric energy using an ecofriendly and clean renewable sources Photovoltaic PV technology is an efficient technology photoelectric effect which is based on converting light to electricity Silicon dominates the PV industries since more than 85 of the solar cells are made from Si Highly expensive and complicated fabrication techniques deprived PV technology and led to development of simple less expensive nanotechnology based novel solar cells like sensitized solar cells Quantum dot sensitized solar cells are most prominent and attractive technology using semiconductor Quantum Dots QDs as sensitizers Unique properties exhibited by QDs such as size dependent electronic structure large extinction coefficients and multiple exciton generation render them attractive candidates as photon harvesters A strategy to effectively harvest solar energy using QDSSC is to do a state of art research focussing on novel QDs and advanced photoelectrode design with proper band alignment of each layers of QDSSC Recognition and development of QDSSC using new QD material and optimized cell components is a new platform to the researchers in order to develop an efficient solar cell
dc.subject.keywordSolar Cell Application
dc.subject.keywordPhotovoltaic
dc.subject.keywordQuantum Dots
dc.description.note
dc.contributor.guideArivanandhan M
dc.publisher.placeChennai
dc.publisher.universityAnna University
dc.publisher.institutionFaculty of Technology
dc.date.registered
dc.date.completed2021
dc.date.awarded2021
dc.format.dimensions21cm
dc.format.accompanyingmaterialNone
dc.source.universityUniversity
dc.type.degreePh.D.
Appears in Departments:Faculty of Technology

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01_title.pdfAttached File29.08 kBAdobe PDFView/Open
02_prelim_pages.pdf734.93 kBAdobe PDFView/Open
03_contents.pdf29.16 kBAdobe PDFView/Open
04_abstracts.pdf104.77 kBAdobe PDFView/Open
05_chapter1.pdf1.09 MBAdobe PDFView/Open
06_chapter2.pdf1.65 MBAdobe PDFView/Open
07_chapter3.pdf1.76 MBAdobe PDFView/Open
08_chapter4.pdf1.89 MBAdobe PDFView/Open
09_chapter5.pdf1.37 MBAdobe PDFView/Open
10_chapter6.pdf1.4 MBAdobe PDFView/Open
11_annexures.pdf267.95 kBAdobe PDFView/Open
80_recommendation.pdf72.14 kBAdobe PDFView/Open


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