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Molecular modeling of layered double hydroxides intercalated with small organic anions
dc.contributor.advisorPospíšil, Miroslav
dc.creatorKovář, Petr
dc.date.accessioned2021-05-19T17:05:36Z
dc.date.available2021-05-19T17:05:36Z
dc.date.issued2008
dc.identifier.urihttp://hdl.handle.net/20.500.11956/104437
dc.description.abstractTitle: Molecularmodeling of layered double hydroxides intercalated with small organic anions Author: Petr Kovdr Department: Department of Chemical Physics and Optics Supervisor: RNDr. Miroslav Pospisil, Ph.D. Supervisor's e-mail address:pospisil@karlov.mff.cuni.cz Abstract: The samples of Zru-Al2 and Mg4-Al2 layered double hydroxides (LDHs) intercalated with benzoate anions and its derivatives (p-methylbenzoate and p-bromobenzoate) were prepared and characterized by powder X-ray diffraction, chemical analysis and thermogravimetry. The interlayer arrangement was calculated by molecular modeling combined with X-ray diffraction. Molecular mechanics and classical molecular dynamics were carried out in C&rius2 modeling environment. In the case of LDH intercalated with benzoate the guests adopt as the best a parquet arrangement in the interlayer space. The addition of CH3 groups and Br atoms in the p-positions of the benzoate ring causes a disorientation of the guests. The interlayer water molecules are located in the planes with COO"groups near the LDH layers. The strategy leading to solving of interlayer arrangement of LDH (LDH layers were kept as rigid units during the energy minimization and NVT statistical ensemble was used during the dynamics simulations) was successfully applicated in the case of LDH...en_US
dc.description.abstractTitle: Molecularmodeling of layered double hydroxides intercalated with small organic anions Author: Petr Kovdr Department: Department of Chemical Physics and Optics Supervisor: RNDr. Miroslav Pospisil, Ph.D. Supervisor's e-mail address:pospisil@karlov.mff.cuni.cz Abstract: The samples of Zru-Al2 and Mg4-Al2 layered double hydroxides (LDHs) intercalated with benzoate anions and its derivatives (p-methylbenzoate and p-bromobenzoate) were prepared and characterized by powder X-ray diffraction, chemical analysis and thermogravimetry. The interlayer arrangement was calculated by molecular modeling combined with X-ray diffraction. Molecular mechanics and classical molecular dynamics were carried out in C&rius2 modeling environment. In the case of LDH intercalated with benzoate the guests adopt as the best a parquet arrangement in the interlayer space. The addition of CH3 groups and Br atoms in the p-positions of the benzoate ring causes a disorientation of the guests. The interlayer water molecules are located in the planes with COO"groups near the LDH layers. The strategy leading to solving of interlayer arrangement of LDH (LDH layers were kept as rigid units during the energy minimization and NVT statistical ensemble was used during the dynamics simulations) was successfully applicated in the case of LDH...cs_CZ
dc.languageČeštinacs_CZ
dc.language.isocs_CZ
dc.publisherUniverzita Karlova, Matematicko-fyzikální fakultacs_CZ
dc.titleMolekulární modelování podvojných vrstevnatých hydroxidů interkalovaných malými organickými aniontycs_CZ
dc.typerigorózní prácecs_CZ
dcterms.created2008
dcterms.dateAccepted2008-09-08
dc.description.departmentDepartment of Chemical Physics and Opticsen_US
dc.description.departmentKatedra chemické fyziky a optikycs_CZ
dc.description.facultyFaculty of Mathematics and Physicsen_US
dc.description.facultyMatematicko-fyzikální fakultacs_CZ
dc.identifier.repId64683
dc.title.translatedMolecular modeling of layered double hydroxides intercalated with small organic anionsen_US
dc.identifier.aleph000986828
thesis.degree.nameRNDr.
thesis.degree.levelrigorózní řízenícs_CZ
thesis.degree.disciplineTraining Teachers of Physics and Mathematics at Higher Secondary Schoolsen_US
thesis.degree.disciplineUčitelství fyziky - matematiky pro střední školycs_CZ
thesis.degree.programPhysicsen_US
thesis.degree.programFyzikacs_CZ
uk.thesis.typerigorózní prácecs_CZ
uk.taxonomy.organization-csMatematicko-fyzikální fakulta::Katedra chemické fyziky a optikycs_CZ
uk.taxonomy.organization-enFaculty of Mathematics and Physics::Department of Chemical Physics and Opticsen_US
uk.faculty-name.csMatematicko-fyzikální fakultacs_CZ
uk.faculty-name.enFaculty of Mathematics and Physicsen_US
uk.faculty-abbr.csMFFcs_CZ
uk.degree-discipline.csUčitelství fyziky - matematiky pro střední školycs_CZ
uk.degree-discipline.enTraining Teachers of Physics and Mathematics at Higher Secondary Schoolsen_US
uk.degree-program.csFyzikacs_CZ
uk.degree-program.enPhysicsen_US
thesis.grade.csUznánocs_CZ
thesis.grade.enRecognizeden_US
uk.abstract.csTitle: Molecularmodeling of layered double hydroxides intercalated with small organic anions Author: Petr Kovdr Department: Department of Chemical Physics and Optics Supervisor: RNDr. Miroslav Pospisil, Ph.D. Supervisor's e-mail address:pospisil@karlov.mff.cuni.cz Abstract: The samples of Zru-Al2 and Mg4-Al2 layered double hydroxides (LDHs) intercalated with benzoate anions and its derivatives (p-methylbenzoate and p-bromobenzoate) were prepared and characterized by powder X-ray diffraction, chemical analysis and thermogravimetry. The interlayer arrangement was calculated by molecular modeling combined with X-ray diffraction. Molecular mechanics and classical molecular dynamics were carried out in C&rius2 modeling environment. In the case of LDH intercalated with benzoate the guests adopt as the best a parquet arrangement in the interlayer space. The addition of CH3 groups and Br atoms in the p-positions of the benzoate ring causes a disorientation of the guests. The interlayer water molecules are located in the planes with COO"groups near the LDH layers. The strategy leading to solving of interlayer arrangement of LDH (LDH layers were kept as rigid units during the energy minimization and NVT statistical ensemble was used during the dynamics simulations) was successfully applicated in the case of LDH...cs_CZ
uk.abstract.enTitle: Molecularmodeling of layered double hydroxides intercalated with small organic anions Author: Petr Kovdr Department: Department of Chemical Physics and Optics Supervisor: RNDr. Miroslav Pospisil, Ph.D. Supervisor's e-mail address:pospisil@karlov.mff.cuni.cz Abstract: The samples of Zru-Al2 and Mg4-Al2 layered double hydroxides (LDHs) intercalated with benzoate anions and its derivatives (p-methylbenzoate and p-bromobenzoate) were prepared and characterized by powder X-ray diffraction, chemical analysis and thermogravimetry. The interlayer arrangement was calculated by molecular modeling combined with X-ray diffraction. Molecular mechanics and classical molecular dynamics were carried out in C&rius2 modeling environment. In the case of LDH intercalated with benzoate the guests adopt as the best a parquet arrangement in the interlayer space. The addition of CH3 groups and Br atoms in the p-positions of the benzoate ring causes a disorientation of the guests. The interlayer water molecules are located in the planes with COO"groups near the LDH layers. The strategy leading to solving of interlayer arrangement of LDH (LDH layers were kept as rigid units during the energy minimization and NVT statistical ensemble was used during the dynamics simulations) was successfully applicated in the case of LDH...en_US
uk.file-availabilityV
uk.grantorUniverzita Karlova, Matematicko-fyzikální fakulta, Katedra chemické fyziky a optikycs_CZ
thesis.grade.codeU
uk.publication-placePrahacs_CZ
uk.thesis.defenceStatusU
dc.identifier.lisID990009868280106986


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