IntroductionNew technologies that allow manipulation of matter at atomic resolution holdthe potential to meet many of the greatest global challenges, bringing revolu-tions in science, medicine, energy, and industry. To face such challenges thecreation of new kind of ''smart'' materials is required. This need has led to anincreasing interest of the scientific community in the field of materials science.However, to obtain functional materials with novel properties, the attentionof material scientists had to move in the range of the nanoscale. Buildingcomplex structures with atom-by-atom control is a hard task. The suggestivenanoworld in which the concepts of function and shape are indissoluble couldbecome extremely chaotic if combined with the elusive character of ''quantisticobjects'' that are ruled by the Indetermination Principle. Nano-objects areextremely sensitive systems in which subtle variations in structural featurescould induce dramatic alterations of electronic structure and therefore in theoverall properties. These revolutionary concepts should be customary for achemist, who is used to facing the task of an extremely precise definition ofnuclear and electronic structures.

Theoretical Strategies for Functionalisation and Encapsulation of Nanotubes

Baldoni Matteo;Mercuri Francesco;
2011

Abstract

IntroductionNew technologies that allow manipulation of matter at atomic resolution holdthe potential to meet many of the greatest global challenges, bringing revolu-tions in science, medicine, energy, and industry. To face such challenges thecreation of new kind of ''smart'' materials is required. This need has led to anincreasing interest of the scientific community in the field of materials science.However, to obtain functional materials with novel properties, the attentionof material scientists had to move in the range of the nanoscale. Buildingcomplex structures with atom-by-atom control is a hard task. The suggestivenanoworld in which the concepts of function and shape are indissoluble couldbecome extremely chaotic if combined with the elusive character of ''quantisticobjects'' that are ruled by the Indetermination Principle. Nano-objects areextremely sensitive systems in which subtle variations in structural featurescould induce dramatic alterations of electronic structure and therefore in theoverall properties. These revolutionary concepts should be customary for achemist, who is used to facing the task of an extremely precise definition ofnuclear and electronic structures.
2011
Inorganic nanotubes
Carbon nanotubes
Theoretical chemistry
Material science
Molecular dynamics
DFT
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/388505
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus ND
  • ???jsp.display-item.citation.isi??? 1
social impact