1
Functional Liquid Crystal Dendrimers: Synthesis of New Materials, Resource for New Applications Dendrimers: new materials obtained with a highly controlled molecular structure in several space orientations. Liquid Crystal (LC) Dendrimers: dendrimers that incorporate directional properties due to mesophase formation. Liquid Crystal (LC) Dendrimers + Active Molecules: multifunctional anisotropic dendrimers with wide variety of physical properties and new applications in two chosen lines: Biomedicine and Advanced Molecular Materials. The aim is to concentrate and accelerate the knowledge distributed in different countries in Europe and reduce the existing gap between academically developed new materials and their industrial applications. The strategy is based on a multidisciplinary training, which will include modelling of new materials, chemical synthesis and controlled chemical orientation, structural functional studies, physical characterisation of structural properties, biological modelling, molecular activity analyses, technology oriented samples and product escalation towards industry processes. These training aspects will go parallel to a research career, complementary formation and cooperation key-events. PROJECT OVERVIEW: The general aim of the “Functional LC Dendrimers: Synthesis of New Materials, resource for New Applications” ITN is to plan, organise, implement and evaluate a joint PhD training programme, looking for multifunctional materials with applications in two fundamental subjects, i.e. Biomedicine and Advanced Materials Science. BASIC DATA: SP3 – People. Support for training and career development of researchers (Marie Curie). Networks for initial training. Grant Agreement nº: 215884. Starting date: 1 st of October, 2008. Duration: 48 months. Maximum Community financial contribution: € 4,219,110.00 PROJECT OBJECTIVES : Training of 16 European PhD (ESR) and improving the skills of 9 post-docs (ER) in this multidisciplinary field. Synthesis and characterisation of new functional LC Dendrimers for Biomedical and Science Materials applications. Study of the physical properties of the new materials synthesised. Survey of the potential applications of the compounds prepared in both Biomedicine and Materials Science fields. 1 4 3 2 Dr Francisco Rubio (Project Manager) Mr Juan I. Gallego (Assistant Project Manager) Prof. José L. Serrano (Coordinator) Universidad de Zaragoza, Departamento de Química Orgánica, C/ Pedro Cerbuna, n° 12, 50009 Zaragoza, Spain Phone: +34 976 76 12 09, Fax: +34 976 12 09, e-mail: [email protected] Web page: www.unizar.es/dendreamers Theory and Modellisation UPATRAS Synthesis and characterisation of the materials UNIZAR / UHULL / CNRS-IPCMS / KTU Applications PHARMAMAR / NANOLOGICA / FRAUNHOFER Design of New Molecular Models New Technical Possibilities For Selective Applications Characterisation of the Physical Properties KTU/ IST / FRAUNHOFER PARTNERS AND SYNERGIES:

Functional Liquid Crystal Dendrimers: Synthesis of New Materials, Resource for New Applications Functional Liquid Crystal Dendrimers: Synthesis of New

  • View
    236

  • Download
    5

Embed Size (px)

Citation preview

Page 1: Functional Liquid Crystal Dendrimers: Synthesis of New Materials, Resource for New Applications Functional Liquid Crystal Dendrimers: Synthesis of New

Functional Liquid Crystal Dendrimers:

Synthesis of New Materials, Resource for New Applications

• Dendrimers: new materials obtained with a highly controlled molecular structure in several space orientations.

• Liquid Crystal (LC) Dendrimers: dendrimers that incorporate directional properties due to mesophase formation.

• Liquid Crystal (LC) Dendrimers + Active Molecules: multifunctional anisotropic dendrimers with wide variety of

physical properties and new applications in two chosen lines: Biomedicine and Advanced Molecular Materials.

The aim is to concentrate and accelerate the knowledge distributed in different countries in Europe and reduce the

existing gap between academically developed new materials and their industrial applications.

The strategy is based on a multidisciplinary training, which will include modelling of new materials, chemical synthesis and

controlled chemical orientation, structural functional studies, physical characterisation of structural properties, biological

modelling, molecular activity analyses, technology oriented samples and product escalation towards industry processes.

These training aspects will go parallel to a research career, complementary formation and cooperation key-events.

PROJECT OVERVIEW:

The general aim of the “Functional LC Dendrimers: Synthesis of New Materials, resource for New Applications”

ITN is to plan, organise, implement and evaluate a joint PhD training programme, looking for multifunctional materials with

applications in two fundamental subjects, i.e. Biomedicine and Advanced Materials Science.

 

BASIC DATA:

• SP3 – People.

• Support for training and career development of researchers (Marie Curie).

• Networks for initial training.

• Grant Agreement nº: 215884.

• Starting date: 1st of October, 2008.

• Duration: 48 months.

• Maximum Community financial contribution: € 4,219,110.00

PROJECT OBJECTIVES :

Training of 16 European PhD (ESR) and improving the skills of 9 post-docs (ER) in this multidisciplinary field.

Synthesis and characterisation of new functional LC Dendrimers for Biomedical and Science Materials applications.

Study of the physical properties of the new materials synthesised.

Survey of the potential applications of the compounds prepared in both Biomedicine and Materials Science fields.

1

4

3

2

Dr Francisco Rubio (Project Manager)Mr Juan I. Gallego (Assistant Project Manager)

Prof. José L. Serrano (Coordinator)

Universidad de Zaragoza, Departamento de Química Orgánica, C/ Pedro Cerbuna, n° 12, 50009 Zaragoza, Spain Phone: +34 976 76 12 09, Fax: +34 976 12 09, e-mail: [email protected]

Web page: www.unizar.es/dendreamers

Theory andModellisation

UPATRAS

Synthesis and characterisation of the materials

UNIZAR / UHULL / CNRS-IPCMS / KTU

Applications

PHARMAMAR / NANOLOGICA / FRAUNHOFER

Design of New

Molecular Models

New Technical Possibilities For Selective Applications

Characterisation of the

Physical Properties

KTU/ IST / FRAUNHOFER

PARTNERS AND SYNERGIES: