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Functionalization of carbon nanostructures by inorganic nanocrystals and potential applications

Authors: Oliveras i Solà, Jana;

Functionalization of carbon nanostructures by inorganic nanocrystals and potential applications

Abstract

[ES] Para desarrollar la aplicabilidad de los materiales híbridos CNS-NP, es de vital importancia i) producir componentes de alta calidad que permitan una metodología de acoplamiento robusta, reproducible y versátil y ii) que el método sea tecnológicamente relevante, incluidas las consideraciones de seguridad y sostenibilidad. en su diseño que permiten la ampliación, lo que abre la conversación sobre la traducción de la nanociencia a la nanotecnología. Ambos desafíos se abordan en el CAPÍTULO 1 del presente trabajo. El CAPÍTULO 2 y el CAPÍTULO 3 de esta tesis abordan las sinergias de las NC y las CNS en el campo de la catálisis y la remediación, respectivamente. Ambos temas han sido escogidos por la ineludible relación entre ellos y la urgencia social de ser atendidos ya que la energía y la contaminación están en el centro de la actual crisis ambiental.

[CA] Per desenvolupar l'aplicabilitat dels materials híbrids CNS-NP és de vital importància i) produir components d'alta qualitat que permetin una metodologia d'acoblament robusta, reproduïble i versàtil i ii) que el mètode sigui tecnològicament rellevant, incloses les consideracions de seguretat i sostenibilitat. en el seu disseny que permeten escalar, que obren la conversa sobre la traducció de la nanociència a la nanotecnologia. Tots dos reptes es tracten al CAPÍTOL 1 del present treball. El CAPÍTOL 2 i el CAPÍTOL 3 d'aquesta tesi aborden les sinergies de NC i CNS en el camp de la catàlisi i la remediació respectivament. Ambdues assignatures s'han escollit per la relació ineludible que hi ha entre elles i per l'urgència social de ser ateses ja que l'energia i la contaminació són el nucli de l'actual crisi ambiental.

[EN] To develop the applicability of CNS-NP hybrid materials it is of vital importance to i) produce high quality components that allow for a robust, reproducible, and versatile coupling methodology and ii) for the method to be technologically relevant, including safety and sustainability considerations in its design that allow for scale-up, which open up the conversation on the translation of nanoscience to nanotechnology. Both challenges are addressed in CHAPTER 1 of the present work. CHAPTER 2 and CHAPTER 3 of this thesis address the synergies of NCs and CNSs in the catalysis and the remediation field respectively. Both subjects have been chosen because of the unavoidable relationship between them and the societal urge of being attended since energy and pollution are at the core of the current environmental crisis.

Tesis presentada para la obtención del título de Doctor en Ciencia de Materiales por la Universidad Autónoma de Barcelona.

Keywords

Nanoestructuras de carbono, Ciències Experimentals, Nanoestructures de carboni, Nanocristales, 00, Carbon nanostructures, Nanocristalls, Nanocrystals

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