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dc.contributor.advisorBhattacharya, Atanu
dc.contributor.authorBera, Anupam
dc.date.accessioned2021-02-17T06:18:18Z
dc.date.available2021-02-17T06:18:18Z
dc.date.submitted2018
dc.identifier.urihttps://etd.iisc.ac.in/handle/2005/4874
dc.description.abstractThe thesis has been presented in two parts. The 1st part of the thesis focuses on the fundamental understanding of room temperature CO2 adsorption on iron-oxide based NP surfaces. The 2nd part describes the understanding of an interesting catalytic reaction dynamics, namely of metalized energetic molecules. The content of the thesis is presented in the following way. In Chapter 2, fabrication, structural elucidation and CO2 surface chemistry of supported iron-oxide (α-Fe2O3) NPs are discussed. In Chapter 3, the same on the supported Fe-Pd-oxide(shell)@Pd(core) NP surfaces is presented where the bimetallization by introducing Pd+2 doping in iron-oxide (α-Fe2O3) NPs, leads to CO2 adsorption at the room temperature. A periodic density functional theory (DFT) results for the CO2 adsorption on the model pristine α-Fe2O3(0001) and on the model Pd+2 doped α-Fe2O3(0001) surfaces are discussed in Chapter 4. In Chapter 5, femtosecond pulse induced chemistry of CO2 on Pd(core)@Fe-Pd-oxide(shell) NP surfaces is discussed. In Chapter 6 I have presented conical intersection-mediated nonadiabatic chemical dynamics of a simple analogue nitramine (containing one N-NO2 energetic group) molecule, dimethylnitramine (DMNA) and its complex with an iron atom (DMNA-Fe). Finally, in Chapter 7, general conclusions and future directions are presenteden_US
dc.language.isoen_USen_US
dc.relation.ispartofseries;G29721
dc.rightsI grant Indian Institute of Science the right to archive and to make available my thesis or dissertation in whole or in part in all forms of media, now hereafter known. I retain all proprietary rights, such as patent rights. I also retain the right to use in future works (such as articles or books) all or part of this thesis or dissertationen_US
dc.subjectRoom Temperature CO2 Adsorptionen_US
dc.subjectCO2 adsorptionen_US
dc.subjectcatalytic reaction dynamicsen_US
dc.subjectperiodic density functional theoryen_US
dc.subject.classificationResearch Subject Categories::NATURAL SCIENCES::Chemistry::Physical chemistryen_US
dc.titleThermal and Femtosecond Laser-Induced CO2-Surface Chemistry on Supported Iron-Oxide Based Nanoparticle Surfaces under UHVen_US
dc.typeThesisen_US
dc.degree.namePhDen_US
dc.degree.levelDoctoralen_US
dc.degree.grantorIndian Institute of Scienceen_US
dc.degree.disciplineFaculty of Scienceen_US


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