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dc.contributor.authorDou, Xiaoyuan
dc.date.accessioned2019-09-18 18:51:18 (GMT)
dc.date.available2020-09-18 04:50:05 (GMT)
dc.date.issued2019-09-18
dc.date.submitted2019-09-04
dc.identifier.urihttp://hdl.handle.net/10012/15063
dc.description.abstractA unique flower-like metal organic framework (ZnHMT) is synthesized by a facile and efficient method. The obtained ZnHMT microflowers were employed for the construction of a multifunctional interlayer towards improved Li-S batteries. Through synthetic optimization, uniform ZnHMT microflowers can be obtained through the fast self-assembly of ultrathin 2D nanosheets within a few minutes under ambient temperature. When implemented as interlayer in Li-S configuration, the as-developed ZnHMT microflowers demonstrate a strong affinity with polysulfides through Lewis acid-base interaction, which effectively confines sulfur species within the cathode section, leading to a significant inhibition on polysulfide shuttling. Moreover, the flower-like assembly architecture not only exposes sufficient absorption sites for sulfur immobilization, but also afford a facile electrolyte infiltration and ion transfer, thus contributing to a fast and durable sulfur electrochemistry. Consequently, Li-S batteries based on the ZnHMT functional separators and simple carbon-based cathodes achieved an excellent cycling stability with a low capacity decay rate for 800 cycles under 1C, superb rate performance up to 5 C, and high areal capacity at raised sulfur loading of 4.5 mg cm-2. These results confirm the great capability of the as-developed ZnHMT interlayer in boosting the battery performance, which not only offers an easy access to high-performance Li-S batteries but could also enlighten the material designs in other related energy storage and conversion fields.en
dc.language.isoenen
dc.publisherUniversity of Waterlooen
dc.subjectlithium sulfur batteriesen
dc.subjectpolysulfides immobilizersen
dc.subjectmetal organic frameworksen
dc.subjectfunctional separatorsen
dc.titleSelf-assembled Metal Organic Framework Microflowers as Polysulfides Immobilizers for Lithium Sulfur Batteriesen
dc.typeMaster Thesisen
dc.pendingfalse
uws-etd.degree.departmentChemical Engineeringen
uws-etd.degree.disciplineChemical Engineering (Nanotechnology)en
uws-etd.degree.grantorUniversity of Waterlooen
uws-etd.degreeMaster of Applied Scienceen
uws-etd.embargo.terms1 yearen
uws.contributor.advisorChen, Zhongwei
uws.contributor.affiliation1Faculty of Engineeringen
uws.published.cityWaterlooen
uws.published.countryCanadaen
uws.published.provinceOntarioen
uws.typeOfResourceTexten
uws.peerReviewStatusUnrevieweden
uws.scholarLevelGraduateen


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