Q3144213 (Q3144213): Difference between revisions

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(‎Created claim: summary (P836): THE RESEARCH OF THIS PROJECT IS FRAMED IN THE CONTROL OF MOTION AT MOLECULAR LEVEL IN MECHANICALLY LINKED MOLECULES, PROTOTYPES PAR EXCELLENCE OF MACHINES AND MOLECULAR SYNTHETIC MOTORS. THE SUPRAMOLECULAR NATURE OF INTERACTIONS BETWEEN THE LINKED COMPONENTS OF THESE SPECIES AND THEIR THREADED STRUCTURE ALLOW FOR PRECISE CONTROL OF THE POSITION AND MOVEMENT OF THEIR MOLECULAR SUBUNITS. IN THIS CONTEXT, WE INTEND TO MAKE CONTRIBUTIONS TO THE FIEL...)
Property / summary
 
THE RESEARCH OF THIS PROJECT IS FRAMED IN THE CONTROL OF MOTION AT MOLECULAR LEVEL IN MECHANICALLY LINKED MOLECULES, PROTOTYPES PAR EXCELLENCE OF MACHINES AND MOLECULAR SYNTHETIC MOTORS. THE SUPRAMOLECULAR NATURE OF INTERACTIONS BETWEEN THE LINKED COMPONENTS OF THESE SPECIES AND THEIR THREADED STRUCTURE ALLOW FOR PRECISE CONTROL OF THE POSITION AND MOVEMENT OF THEIR MOLECULAR SUBUNITS. IN THIS CONTEXT, WE INTEND TO MAKE CONTRIBUTIONS TO THE FIELD MAKING USE OF MECHANICALLY LINKED MOLECULES BY POSING: (A) THE ESTABLISHMENT OF NEW MODES OF CONTROLLING MOTION AT THE MOLECULAR LEVEL THROUGH THE APPROPRIATE DESIGN OF NEW [2]ROTAXANS USING: (I) REVERSIBLE COMPETITIVE INTERACTIONS WITH NEUTRAL MOLECULES OR RADICAL ANIONS TO INDUCE MOVEMENT INTERMOLECULARLY, (II) REGULATION OF THE MOVEMENT OF TRANSLATION USING PHOTOACTIVE RECEPTORS, (III) EXPLORATION OF (ELECTRO)CHEMICAL PROCESSES TO CONTROL THE POPULATION DISTRIBUTION OF MOLECULAR SHUTTLES, (IV) EFFICIENT PHOTOISOMERISATION PROCESSES TO SWITCH THE STATES OF NEW MOLECULAR LAUNCHERS, (V) FUNCTIONALISING MESOPOROUS MATERIALS WITH MOLECULAR SHUTTLES FOR USE AS DISPENSERS AND (B) SEEKING WAYS TO ORGANISE ROTAXANS ASSEMBLED BY HYDROGEN BRIDGES IN SUPRAMOLECULAR POLYMERS OR IN METAL-ORGANIC BUILDINGS AND EXPLORE THE ROLE OF THREADED FRAGMENT IN ITS CONSTRUCTION AND APPLICATIONS. (English)
Property / summary: THE RESEARCH OF THIS PROJECT IS FRAMED IN THE CONTROL OF MOTION AT MOLECULAR LEVEL IN MECHANICALLY LINKED MOLECULES, PROTOTYPES PAR EXCELLENCE OF MACHINES AND MOLECULAR SYNTHETIC MOTORS. THE SUPRAMOLECULAR NATURE OF INTERACTIONS BETWEEN THE LINKED COMPONENTS OF THESE SPECIES AND THEIR THREADED STRUCTURE ALLOW FOR PRECISE CONTROL OF THE POSITION AND MOVEMENT OF THEIR MOLECULAR SUBUNITS. IN THIS CONTEXT, WE INTEND TO MAKE CONTRIBUTIONS TO THE FIELD MAKING USE OF MECHANICALLY LINKED MOLECULES BY POSING: (A) THE ESTABLISHMENT OF NEW MODES OF CONTROLLING MOTION AT THE MOLECULAR LEVEL THROUGH THE APPROPRIATE DESIGN OF NEW [2]ROTAXANS USING: (I) REVERSIBLE COMPETITIVE INTERACTIONS WITH NEUTRAL MOLECULES OR RADICAL ANIONS TO INDUCE MOVEMENT INTERMOLECULARLY, (II) REGULATION OF THE MOVEMENT OF TRANSLATION USING PHOTOACTIVE RECEPTORS, (III) EXPLORATION OF (ELECTRO)CHEMICAL PROCESSES TO CONTROL THE POPULATION DISTRIBUTION OF MOLECULAR SHUTTLES, (IV) EFFICIENT PHOTOISOMERISATION PROCESSES TO SWITCH THE STATES OF NEW MOLECULAR LAUNCHERS, (V) FUNCTIONALISING MESOPOROUS MATERIALS WITH MOLECULAR SHUTTLES FOR USE AS DISPENSERS AND (B) SEEKING WAYS TO ORGANISE ROTAXANS ASSEMBLED BY HYDROGEN BRIDGES IN SUPRAMOLECULAR POLYMERS OR IN METAL-ORGANIC BUILDINGS AND EXPLORE THE ROLE OF THREADED FRAGMENT IN ITS CONSTRUCTION AND APPLICATIONS. (English) / rank
 
Normal rank
Property / summary: THE RESEARCH OF THIS PROJECT IS FRAMED IN THE CONTROL OF MOTION AT MOLECULAR LEVEL IN MECHANICALLY LINKED MOLECULES, PROTOTYPES PAR EXCELLENCE OF MACHINES AND MOLECULAR SYNTHETIC MOTORS. THE SUPRAMOLECULAR NATURE OF INTERACTIONS BETWEEN THE LINKED COMPONENTS OF THESE SPECIES AND THEIR THREADED STRUCTURE ALLOW FOR PRECISE CONTROL OF THE POSITION AND MOVEMENT OF THEIR MOLECULAR SUBUNITS. IN THIS CONTEXT, WE INTEND TO MAKE CONTRIBUTIONS TO THE FIELD MAKING USE OF MECHANICALLY LINKED MOLECULES BY POSING: (A) THE ESTABLISHMENT OF NEW MODES OF CONTROLLING MOTION AT THE MOLECULAR LEVEL THROUGH THE APPROPRIATE DESIGN OF NEW [2]ROTAXANS USING: (I) REVERSIBLE COMPETITIVE INTERACTIONS WITH NEUTRAL MOLECULES OR RADICAL ANIONS TO INDUCE MOVEMENT INTERMOLECULARLY, (II) REGULATION OF THE MOVEMENT OF TRANSLATION USING PHOTOACTIVE RECEPTORS, (III) EXPLORATION OF (ELECTRO)CHEMICAL PROCESSES TO CONTROL THE POPULATION DISTRIBUTION OF MOLECULAR SHUTTLES, (IV) EFFICIENT PHOTOISOMERISATION PROCESSES TO SWITCH THE STATES OF NEW MOLECULAR LAUNCHERS, (V) FUNCTIONALISING MESOPOROUS MATERIALS WITH MOLECULAR SHUTTLES FOR USE AS DISPENSERS AND (B) SEEKING WAYS TO ORGANISE ROTAXANS ASSEMBLED BY HYDROGEN BRIDGES IN SUPRAMOLECULAR POLYMERS OR IN METAL-ORGANIC BUILDINGS AND EXPLORE THE ROLE OF THREADED FRAGMENT IN ITS CONSTRUCTION AND APPLICATIONS. (English) / qualifier
 
point in time: 12 October 2021
Timestamp+2021-10-12T00:00:00Z
Timezone+00:00
CalendarGregorian
Precision1 day
Before0
After0

Revision as of 14:00, 12 October 2021

Project Q3144213 in Spain
Language Label Description Also known as
English
No label defined
Project Q3144213 in Spain

    Statements

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    75,504.0 Euro
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    94,380.0 Euro
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    80.0 percent
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    1 January 2015
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    31 December 2017
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    UNIVERSIDAD DE MURCIA
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    37°59'32.57"N, 1°7'49.94"W
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    30030
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    LA INVESTIGACION DE ESTE PROYECTO SE ENCUADRA EN EL CONTROL DEL MOVIMIENTO A NIVEL MOLECULAR EN MOLECULAS ENLAZADAS MECANICAMENTE, PROTOTIPOS POR EXCELENCIA DE MAQUINAS Y MOTORES MOLECULARES SINTETICOS. LA NATURALEZA SUPRAMOLECULAR DE LAS INTERACCIONES ENTRE LOS COMPONENTES ENLAZADOS DE ESTAS ESPECIES Y SU ESTRUCTURA ENHEBRADA PERMITEN UN CONTROL PRECISO DE LA POSICION Y EL MOVIMIENTO DE SUS SUBUNIDADES MOLECULARES. EN ESTE CONTEXTO, PRETENDEMOS REALIZAR APORTACIONES AL CAMPO HACIENDO USO DE MOLECULAS ENLAZADAS MECANICAMENTE PLANTEANDO: (A) EL ESTABLECIMIENTO DE NUEVOS MODOS DE CONTROLAR EL MOVIMIENTO A NIVEL MOLECULAR MEDIANTE EL DISEÑO ADECUADO DE NUEVOS [2]ROTAXANOS RECURRIENDO A: (I) INTERACCIONES COMPETITIVAS REVERSIBLES CON MOLECULAS NEUTRAS O ANIONES RADICALES PARA INDUCIR EL MOVIMIENTO DE MANERA INTERMOLECULAR, (II) REGULACION DEL MOVIMIENTO DE TRASLACION EMPLEANDO RECEPTORES FOTOACTIVOS, (III) EXPLORACION DE PROCESOS (ELECTRO)QUIMICOS PARA CONTROLAR LA DISTRIBUCION POBLACIONAL DE LANZADERAS MOLECULARES, (IV) PROCESOS DE FOTOISOMERIZACION EFICIENTE PARA CONMUTAR LOS ESTADOS DE NUEVAS LANZADERAS MOLECULARES, (V) FUNCIONALIZANDO MATERIALES MESOPOROSOS CON LANZADERAS MOLECULARES PARA SU UTILIZACION COMO DOSIFICADORES Y (B) LA BUSQUEDA DE MODOS DE ORGANIZAR ROTAXANOS ENSAMBLADOS MEDIANTE PUENTES DE HIDROGENO EN POLIMEROS SUPRAMOLECULARES O EN EDIFICACIONES METAL-ORGANICAS Y EXPLORAR EL PAPEL QUE JUEGA EL FRAGMENTO ENHEBRADO EN SU CONSTRUCCION Y SUS APLICACIONES. (Spanish)
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    THE RESEARCH OF THIS PROJECT IS FRAMED IN THE CONTROL OF MOTION AT MOLECULAR LEVEL IN MECHANICALLY LINKED MOLECULES, PROTOTYPES PAR EXCELLENCE OF MACHINES AND MOLECULAR SYNTHETIC MOTORS. THE SUPRAMOLECULAR NATURE OF INTERACTIONS BETWEEN THE LINKED COMPONENTS OF THESE SPECIES AND THEIR THREADED STRUCTURE ALLOW FOR PRECISE CONTROL OF THE POSITION AND MOVEMENT OF THEIR MOLECULAR SUBUNITS. IN THIS CONTEXT, WE INTEND TO MAKE CONTRIBUTIONS TO THE FIELD MAKING USE OF MECHANICALLY LINKED MOLECULES BY POSING: (A) THE ESTABLISHMENT OF NEW MODES OF CONTROLLING MOTION AT THE MOLECULAR LEVEL THROUGH THE APPROPRIATE DESIGN OF NEW [2]ROTAXANS USING: (I) REVERSIBLE COMPETITIVE INTERACTIONS WITH NEUTRAL MOLECULES OR RADICAL ANIONS TO INDUCE MOVEMENT INTERMOLECULARLY, (II) REGULATION OF THE MOVEMENT OF TRANSLATION USING PHOTOACTIVE RECEPTORS, (III) EXPLORATION OF (ELECTRO)CHEMICAL PROCESSES TO CONTROL THE POPULATION DISTRIBUTION OF MOLECULAR SHUTTLES, (IV) EFFICIENT PHOTOISOMERISATION PROCESSES TO SWITCH THE STATES OF NEW MOLECULAR LAUNCHERS, (V) FUNCTIONALISING MESOPOROUS MATERIALS WITH MOLECULAR SHUTTLES FOR USE AS DISPENSERS AND (B) SEEKING WAYS TO ORGANISE ROTAXANS ASSEMBLED BY HYDROGEN BRIDGES IN SUPRAMOLECULAR POLYMERS OR IN METAL-ORGANIC BUILDINGS AND EXPLORE THE ROLE OF THREADED FRAGMENT IN ITS CONSTRUCTION AND APPLICATIONS. (English)
    12 October 2021
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    Murcia
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    Identifiers

    CTQ2014-56887-P
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