La Universitat de Girona té més de 15.000 estudiants i 1.400 professors. Ofereix uns 50 estudis de grau i més de 20 màsters. S’organitza en 9 centres docents, 1 Escola de Doctorat, 6 centres adscrits. L’activitat de recerca es du a terme en 24 departaments, 12 instituts de recerca i més de 40 càtedres, a més d’un centenar de grups de recerca especialitzat. Té la seu a la ciutat de Girona i s’integra en el sistema d’universitats públiques catalanes.
També trobareu les tesis recol·lectades al repositori DUGi .
Si sou doctor o doctora de la Universitat de Girona i voleu publicar la vostra tesi a TDX, contacteu amb tdx@udg.edu. Per a més informació consulteu les preguntes més freqüents.
Riesco-Llach, Gerard (Fecha de defensa: 2024-07-16)
ENG- According to the estimates of the United Nations, by the end of this century the world population will exceed 10 million. In this context, society will face several challenges, one of which is food production to satisfy ...
Díaz Jiménez, Àlex (Fecha de defensa: 2024-07-15)
One of the primary objectives in organic synthesis is to devise novel methods for converting simple and readily available compounds into more complex and functionalized structures. In this regard, transition metal-catalyzed ...
Pujals Crusat, Míriam (Fecha de defensa: 2024-06-14)
Since the discovery of fullerenes and endohedral metallofullerenes (EMFs), these spheroidal carbon cages have attracted the attention of the scientific community due to their exceptional electronic and physicochemical ...
Besalú Sala, Pau (Fecha de defensa: 2024-05-20)
In this PhD thesis, we explore the fundamental properties of molecules and materials that shape their behavior and potential applications in science and technology. Specifically, we focus on developing advanced computer ...
Escayola Gordils, Sílvia (Fecha de defensa: 2024-05-14)
Aromaticity is a widely used concept in the prediction, design, and understanding of key aspects related to reactivity, structure, and properties of molecules. Linked to cyclic or three-dimensional molecular systems, it ...
Álvarez Yebra, Rubén (Fecha de defensa: 2023-11-07)
Cavitands are macromolecules with a permanent cavity where smaller molecules or ions can be accommodated. The hydrophobic cavity of these supramolecules allows the binding of other molecules though non-covalent interactions, ...
Font Rubio, Pau (Fecha de defensa: 2023-10-06)
Homogeneous reactions catalyzed by gold have mainly been developed in the past two decades, stemming from the proneness of Au(I) and Au(III) complexes to coordinate and activate carbon-carbon multiple bonds towards a ...
Soler i Parpal, Jordi (Fecha de defensa: 2023-09-19)
Enzymes are a type of proteins that help chemical reactions happen faster in living organisms. Scientists have been able to modify these enzymes using a technique called protein engineering, which allowed to increase the ...
Vicens Serra, Laia (Fecha de defensa: 2023-07-18)
Most of the organic molecules used in chemical industry (and their synthetic precursors) contain oxygen atoms in their structure. One of the most convenient methods for the preparation of oxygenated compounds is the ...
Calvó-Tusell, Carla (Fecha de defensa: 2023-06-02)
Enzymes are molecules that play a crucial role in many biological and chemical processes. To understand how they work and how to design enzymes with specific functions, it is important to study their molecular structure ...
Vila Vadrí, Jordi (Fecha de defensa: 2023-04-21)
The development of novel catalytic methodologies involving the formation of carbon – carbon/heteroatom bonds to produce cyclic systems constitutes a field of great interest in the modern synthetic organic chemistry. Over ...
Curado Carballada, Christian (Fecha de defensa: 2023-03-13)
Enzymes have evolved through years until becoming great catalysts that present high selectivity, specificity, and activity. Initially, enzymes were understood as static (bio)molecular structures capable of accelerating ...
Gimferrer Andrés, Martí (Fecha de defensa: 2023-03-27)
In the last decades, electronic structure methods have been crucial for chemists to achieve deeper insight into chemistry itself and to make predictions before performing the actual experiments. The development of computational ...
Ubasart Clarà, Ernest (Fecha de defensa: 2022-10-28)
The development of supramolecular assemblies with big cavities is important to recognize specific guests or infer a chemo- or regioselective chemistry, in analogy to natural enzymes. The objective of this thesis was to ...
Capdevila Güell, Lorena (Fecha de defensa: 2022-07-22)
The development of new methodologies for the construction of complex molecules is one of the principal objectives in synthetic organic chemistry. Although huge advances have been made on cross-coupling reactions, there is ...
Serrano Hervás, Eila (Fecha de defensa: 2022-07-20)
Chiral 1,2-amino alcohols are motifs widely present in different high valuable biologically active compounds. Many synthetic and enzymatic routes have been developed for producing optically active amino alcohols starting ...
Serra Compte, Albert (Fecha de defensa: 2021-03-26)
Antibiotic residues in the environment are amongst the most concerning micropollutants due to their potential impact on the natural ecosystems and human health. In this thesis, laboratory and field studies were conducted ...
Cianfanelli, Marco (Fecha de defensa: 2021-12-03)
In this thesis we developed a protocol for the intramolecular oxidation of prochiral secondary C-H bonds in which carboxylic acids, acting as directing groups for the oxidant species, promoted a highly site-selective and ...
Magallón Gubau, Carla (Fecha de defensa: 2022-05-16)
Nowadays, one of the main goals in organic chemistry and fine industry is the development of new synthetic methodologies for the preparation of life-relevant products in a sustainable manner. The use of first-row ...
Guerrero Troyano, Isabel (Fecha de defensa: 2022-03-13)
This thesis studies the behavior of different metallacarboranes such as Na[Co(C2B9H11)2] Na[1] and their chlorinated derivatives, Na[3,3’-Co(8-Cl-1,2-C2B9H10)2] Na[Cl2-1] i Na[3,3’-Co(8,9,12-Cl3-1,2-C2B9H8)2] Na[Cl6-1], ...