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dc.contributor.authorTsokkou, Demetraen
dc.contributor.authorPapagiorgis, Parisen
dc.contributor.authorProtesescu, Loredanaen
dc.contributor.authorKovalenko, Maksym V.en
dc.contributor.authorChoulis, Stelios A.en
dc.contributor.authorChristofides, Constantinosen
dc.contributor.authorItskos, Grigoriosen
dc.contributor.authorOthonos, Andreas S.en
dc.creatorTsokkou, Demetraen
dc.creatorPapagiorgis, Parisen
dc.creatorProtesescu, Loredanaen
dc.creatorKovalenko, Maksym V.en
dc.creatorChoulis, Stelios A.en
dc.creatorChristofides, Constantinosen
dc.creatorItskos, Grigoriosen
dc.creatorOthonos, Andreas S.en
dc.date.accessioned2019-12-02T15:34:39Z
dc.date.available2019-12-02T15:34:39Z
dc.date.issued2014
dc.identifier.issn1614-6832
dc.identifier.urihttp://gnosis.library.ucy.ac.cy/handle/7/59191
dc.description.abstractPbS quantum dots (QDs) of different sizes capped with short (NH4)(3)AsS3 inorganic ligands are produced via ligand exchange processes from oleate-capped PbS QDs. The solid-state photophysical properties of the control organic-capped and the inorganic-ligand-capped QDs are investigated to determine their potential for optoelectronic applications. Ultrafast transient transmission shows that in the oleate-capped QDs, carrier recombination at sub-nanosecond scales occurs via Auger recombination, traps, and surface states. At longer times, intense signals associated with radiative recombination are obtained. After ligand exchange, the QDs become decorated with (NH4)(3)AsS3 complexes and relaxation is dominated by efficient carrier transfer to the ligand states on timescales as fast as approximate to 2 ps, which competes with carrier thermalization to the QD band edge states. Recombination channels present in the oleate-capped QDs, such as radiative and Auger recombination, appear quenched in the inorganic-capped QDs. Evidence of efficient carrier trapping at shallow ligand states, which appears more intense under excitation above the (NH4)(3)AsS3 gap, is provided. A detailed band diagram of the various relaxation and recombination processes is proposed that comprehensively describes the photophysics of the QD systems studied.en
dc.sourceAdvanced Energy Materialsen
dc.subjectTRANSPORTen
dc.subjectDYNAMICSen
dc.subjectBLENDSen
dc.subjectCOLLOIDAL NANOCRYSTALSen
dc.subjectFIELD-EFFECT TRANSISTORSen
dc.subjectLIGANDSen
dc.subjectPHOTODETECTORSen
dc.subjectPHOTOVOLTAICSen
dc.subjectSOLAR-CELLSen
dc.subjectSOLIDSen
dc.subjectSURFACEen
dc.titlePhotophysics of PbS Quantum Dot Films Capped with Arsenic Sulfide Ligandsen
dc.typeinfo:eu-repo/semantics/article
dc.identifier.doi10.1002/aenm.201301547
dc.description.volume4
dc.description.issue7
dc.description.startingpage1301547
dc.description.endingpage1301547
dc.author.facultyΣχολή Θετικών και Εφαρμοσμένων Επιστημών / Faculty of Pure and Applied Sciences
dc.author.departmentΤμήμα Φυσικής / Department of Physics
dc.type.uhtypeArticleen
dc.description.notes<p>PT: Jen
dc.description.notesTC: 8en
dc.description.notesJ9: ADV ENERGY MATER</p>en
dc.source.abbreviationAdv.Energy Mater.en
dc.contributor.orcidItskos, Grigorios [0000-0003-3971-3801]
dc.contributor.orcidOthonos, Andreas S. [0000-0003-0016-9116]
dc.contributor.orcidChoulis, Stelios A. [0000-0002-7899-6296]
dc.contributor.orcidChristofides, Constantinos [0000-0002-4020-4660]
dc.gnosis.orcid0000-0003-3971-3801
dc.gnosis.orcid0000-0003-0016-9116
dc.gnosis.orcid0000-0002-7899-6296
dc.gnosis.orcid0000-0002-4020-4660


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