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NanoSpace SIGNED

Self-assembled Tubular Nanostructures with Functional Pores

Total Cost €


EC-Contrib. €






 NanoSpace project word cloud

Explore the words cloud of the NanoSpace project. It provides you a very rough idea of what is the project "NanoSpace" about.

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Project "NanoSpace" data sheet

The following table provides information about the project.


Organization address
city: MADRID
postcode: 28049

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country Spain [ES]
 Total cost 170˙121 €
 EC max contribution 170˙121 € (100%)
 Programme 1. H2020-EU.1.3.2. (Nurturing excellence by means of cross-border and cross-sector mobility)
 Code Call H2020-MSCA-IF-2017
 Funding Scheme MSCA-IF-EF-ST
 Starting year 2019
 Duration (year-month-day) from 2019-09-01   to  2021-08-31


Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    UNIVERSIDAD AUTONOMA DE MADRID ES (MADRID) coordinator 170˙121.00


 Project objective

Driven by their large variety of potential applications, their nanometre-scale dimensions, and their appealing high aspect ratio, scientists are increasingly being attracted to the challenge of designing artificial nanotubular and nanoporous materials. In this context, NanoSpace arises as an unconventional and versatile project, based on molecular self-assembly, towards organic water-soluble tubular architectures endowed with well-defined hydrophobic nanospaces. The MSC candidate, Dr. Fátima Aparicio Hernández, will focus on introducing catalytic function to such porous nanostructures. The inner confined space of the nanotubes will be provided with controlled chemical coatings (i.e. hydrophobic) so that they can extract and host molecules as a function of their size and chemical affinity. The attachement of catalysts allows the transformation of specifically recognized molecules. The ultimate objective would be the fabrication of advanced nanoporous materials for the extraction and catalytic transformation of specific molecules as a function of their size and chemical nature. NanoSpace introduces fundamental challenges and unprecedented approaches in chemical self-assembly and constitutes the best research scenario for the candidate to learn from different fields across physical and biological sciences and to further develop her scientific career. The host Nanostructured Molecular Systems and Materials group, directed by Prof. David González-Rodríguez (DGR), is an active, emergent group, with a strong background in the topics of the proposal, and funded, among others, by an ERC-granted project. The host institution, the Universidad Autónoma de Madrid (UAM) is one of the most relevant and dynamic universities.

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The information about "NANOSPACE" are provided by the European Opendata Portal: CORDIS opendata.

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