| dc.contributor.advisor | Burda, Jaroslav | |
| dc.creator | Maixner, Michal | |
| dc.date.accessioned | 2017-05-16T09:20:17Z | |
| dc.date.available | 2017-05-16T09:20:17Z | |
| dc.date.issued | 2013 | |
| dc.identifier.uri | http://hdl.handle.net/20.500.11956/55970 | |
| dc.description.abstract | v slovenskom jazyku: Táto práca sa zaoberá vlastnosťami polyanilínu na kremičitej podložke, konkrétne jeho adhéznou energiou a spektrami polyanilínu s rôznymi nábojmi, vypočítanými metódami kvantovej chémie. Vypočítané spektra boli porovnané s experimentálnymi. Na optimalizáciu komplexného modelu bola použíta metóda DFT ω-B97XD s bázou 3-21G a pre výpočet vibračných spektier bola použitá metóda DFT ω-B97XD s bázou 6-31G(d,p). Pre výpočet energie bola použitá metóda DFT ω-B97XD s bázou 6-31G*. Zistená adhézna energia interpoláciou pre nekonečne dlhý retiazok činila 1,9kcal/mol. Vypočítané Ramanové spektrá boli nafitované na experimentálne data. Takto zistené spektrum sa v hrubých rysoch zhodovalo s experimentálnym, aj keď pri detailnejšom pohľade bolo vidieť rozdiely spôsobené nezahrnutím prostredia a interakcií polyanilínových retiazkov medzi sebou. | cs_CZ |
| dc.description.abstract | This work is focused on the properties of polyaniline placed on the model of silicate surface, namely its adhesion energy and spectra of polyaniline with different charge, computed by means of quantum chemistry. Computed spectra were compared with experimental data. The DFT metod ω-B97XD with 3-21G base was used for optimalization of the complex model and for determination of vibrational spectra the DFT metod ω-B97XD with 6-31G(d,p) base was used. Evaluation of the adhesion energy DFT metod ω-B97XD with 6-31G* base was used. The adhesion energy computed by interpolation to infinite polymer was 1,9kcal/mol. Computed Raman spectra was fit to experimental data. Spectrum found by this metod was similar to experimental in some aproximation, but more detail look would reavel some differences caused by not including of enviroment and of interaction between polyaniline | en_US |
| dc.language | Slovenčina | cs_CZ |
| dc.language.iso | sk_SK | |
| dc.publisher | Univerzita Karlova, Matematicko-fyzikální fakulta | cs_CZ |
| dc.subject | polyanilín | cs_CZ |
| dc.subject | adhézna energia | cs_CZ |
| dc.subject | infračervená spektroskopia | cs_CZ |
| dc.subject | Ramanová spektroskopia | cs_CZ |
| dc.subject | kvantová chémia | cs_CZ |
| dc.subject | polyaniline | en_US |
| dc.subject | adhesion energy | en_US |
| dc.subject | infrared spectra | en_US |
| dc.subject | Raman spectra | en_US |
| dc.subject | quantum chemistry | en_US |
| dc.title | Studium interakčních a adhezních energií polyanilínových modelů s povrchy vybraných materiálů metodami kvantové chemie | sk_SK |
| dc.type | bakalářská práce | cs_CZ |
| dcterms.created | 2013 | |
| dcterms.dateAccepted | 2013-09-12 | |
| dc.description.department | Department of Chemical Physics and Optics | en_US |
| dc.description.department | Katedra chemické fyziky a optiky | cs_CZ |
| dc.description.faculty | Faculty of Mathematics and Physics | en_US |
| dc.description.faculty | Matematicko-fyzikální fakulta | cs_CZ |
| dc.identifier.repId | 115286 | |
| dc.title.translated | Computational Study of the Interaction and adhesioin energies of polyaniline models with surfaces of the selected materials. | en_US |
| dc.title.translated | Studium interakčních a adhezních energií polyanilínových modelů s povrchy vybraných materiálů metodami kvantové chemie | cs_CZ |
| dc.contributor.referee | Tokarský, Jonáš | |
| dc.identifier.aleph | 001623489 | |
| thesis.degree.name | Bc. | |
| thesis.degree.level | bakalářské | cs_CZ |
| thesis.degree.discipline | General Physics | en_US |
| thesis.degree.discipline | Obecná fyzika | cs_CZ |
| thesis.degree.program | Fyzika | cs_CZ |
| thesis.degree.program | Physics | en_US |
| uk.thesis.type | bakalářská práce | cs_CZ |
| uk.taxonomy.organization-cs | Matematicko-fyzikální fakulta::Katedra chemické fyziky a optiky | cs_CZ |
| uk.taxonomy.organization-en | Faculty of Mathematics and Physics::Department of Chemical Physics and Optics | en_US |
| uk.faculty-name.cs | Matematicko-fyzikální fakulta | cs_CZ |
| uk.faculty-name.en | Faculty of Mathematics and Physics | en_US |
| uk.faculty-abbr.cs | MFF | cs_CZ |
| uk.degree-discipline.cs | Obecná fyzika | cs_CZ |
| uk.degree-discipline.en | General Physics | en_US |
| uk.degree-program.cs | Fyzika | cs_CZ |
| uk.degree-program.en | Physics | en_US |
| thesis.grade.cs | Výborně | cs_CZ |
| thesis.grade.en | Excellent | en_US |
| uk.abstract.cs | v slovenskom jazyku: Táto práca sa zaoberá vlastnosťami polyanilínu na kremičitej podložke, konkrétne jeho adhéznou energiou a spektrami polyanilínu s rôznymi nábojmi, vypočítanými metódami kvantovej chémie. Vypočítané spektra boli porovnané s experimentálnymi. Na optimalizáciu komplexného modelu bola použíta metóda DFT ω-B97XD s bázou 3-21G a pre výpočet vibračných spektier bola použitá metóda DFT ω-B97XD s bázou 6-31G(d,p). Pre výpočet energie bola použitá metóda DFT ω-B97XD s bázou 6-31G*. Zistená adhézna energia interpoláciou pre nekonečne dlhý retiazok činila 1,9kcal/mol. Vypočítané Ramanové spektrá boli nafitované na experimentálne data. Takto zistené spektrum sa v hrubých rysoch zhodovalo s experimentálnym, aj keď pri detailnejšom pohľade bolo vidieť rozdiely spôsobené nezahrnutím prostredia a interakcií polyanilínových retiazkov medzi sebou. | cs_CZ |
| uk.abstract.en | This work is focused on the properties of polyaniline placed on the model of silicate surface, namely its adhesion energy and spectra of polyaniline with different charge, computed by means of quantum chemistry. Computed spectra were compared with experimental data. The DFT metod ω-B97XD with 3-21G base was used for optimalization of the complex model and for determination of vibrational spectra the DFT metod ω-B97XD with 6-31G(d,p) base was used. Evaluation of the adhesion energy DFT metod ω-B97XD with 6-31G* base was used. The adhesion energy computed by interpolation to infinite polymer was 1,9kcal/mol. Computed Raman spectra was fit to experimental data. Spectrum found by this metod was similar to experimental in some aproximation, but more detail look would reavel some differences caused by not including of enviroment and of interaction between polyaniline | en_US |
| uk.file-availability | V | |
| uk.publication.place | Praha | cs_CZ |
| uk.grantor | Univerzita Karlova, Matematicko-fyzikální fakulta, Katedra chemické fyziky a optiky | cs_CZ |
| dc.identifier.lisID | 990016234890106986 | |