TY - JOUR
T1 - Advanced 1D heterostructures based on nanotube templates and molecules
AU - Allard, Charlotte
AU - Alvarez, Laurent
AU - Bantignies, Jean Louis
AU - Bendiab, Nedjma
AU - Cambré, Sofie
AU - Campidelli, Stephane
AU - Fagan, Jeffrey A.
AU - Flahaut, Emmanuel
AU - Flavel, Benjamin
AU - Fossard, Frédéric
AU - Gaufrès, Etienne
AU - Heeg, Sebastian
AU - Lauret, Jean Sebastien
AU - Loiseau, Annick
AU - Marceau, Jean Baptiste
AU - Martel, Richard
AU - Marty, Laëtitia
AU - Pichler, Thomas
AU - Voisin, Christophe
AU - Reich, Stephanie
AU - Setaro, Antonio
AU - Shi, Lei
AU - Wenseleers, Wim
N1 - Publisher Copyright:
© 2024 The Royal Society of Chemistry.
PY - 2024/7/22
Y1 - 2024/7/22
N2 - Recent advancements in materials science have shed light on the potential of exploring hierarchical assemblies of molecules on surfaces, driven by both fundamental and applicative challenges. This field encompasses diverse areas including molecular storage, drug delivery, catalysis, and nanoscale chemical reactions. In this context, the utilization of nanotube templates (NTs) has emerged as promising platforms for achieving advanced one-dimensional (1D) molecular assemblies. NTs offer cylindrical, crystalline structures with high aspect ratios, capable of hosting molecules both externally and internally (Mol@NT). Furthermore, NTs possess a wide array of available diameters, providing tunability for tailored assembly. This review underscores recent breakthroughs in the field of Mol@NT. The first part focuses on the diverse panorama of structural properties in Mol@NT synthesized in the last decade. The advances in understanding encapsulation, adsorption, and ordering mechanisms are detailed. In a second part, the review highlights the physical interactions and photophysics properties of Mol@NT obtained by the confinement of molecules and nanotubes in the van der Waals distance regime. The last part of the review describes potential applicative fields of these 1D heterostructures, providing specific examples in photovoltaics, luminescent materials, and bio-imaging. A conclusion gathers current challenges and perspectives of the field to foster discussion in related communities.
AB - Recent advancements in materials science have shed light on the potential of exploring hierarchical assemblies of molecules on surfaces, driven by both fundamental and applicative challenges. This field encompasses diverse areas including molecular storage, drug delivery, catalysis, and nanoscale chemical reactions. In this context, the utilization of nanotube templates (NTs) has emerged as promising platforms for achieving advanced one-dimensional (1D) molecular assemblies. NTs offer cylindrical, crystalline structures with high aspect ratios, capable of hosting molecules both externally and internally (Mol@NT). Furthermore, NTs possess a wide array of available diameters, providing tunability for tailored assembly. This review underscores recent breakthroughs in the field of Mol@NT. The first part focuses on the diverse panorama of structural properties in Mol@NT synthesized in the last decade. The advances in understanding encapsulation, adsorption, and ordering mechanisms are detailed. In a second part, the review highlights the physical interactions and photophysics properties of Mol@NT obtained by the confinement of molecules and nanotubes in the van der Waals distance regime. The last part of the review describes potential applicative fields of these 1D heterostructures, providing specific examples in photovoltaics, luminescent materials, and bio-imaging. A conclusion gathers current challenges and perspectives of the field to foster discussion in related communities.
UR - https://www.scopus.com/pages/publications/85199379109
U2 - 10.1039/d3cs00467h
DO - 10.1039/d3cs00467h
M3 - Review
C2 - 39036944
AN - SCOPUS:85199379109
SN - 0306-0012
VL - 53
SP - 8457
EP - 8512
JO - Chemical Society Reviews
JF - Chemical Society Reviews
IS - 16
ER -