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Cargo-towing Highly enantioselective Electro-pumps: unconventional asymmetrIc Readout and transmission of chiral information (CHEIR)

Progetto
Chirality is found throughout nature, but it occupies a special place in chemistry, perhaps for historical reasons, but mainly as a resultof the beneficial properties of chiral molecules across a diverse range of areas, from medicine to materials science. The global aim ofCHEIR is to achieve with unprecedented efficiency the propagation of chiral information along different length scales, based on thesynergy of well-chosen molecular ingredients and physicochemical engineering. The artificial systems here involved can be consideredas models for the transmission of chiral information through space. Such ambitious aim could be achieved developing a cargo-towingelectro-pump based on chiral conducting polymers for targeted drug-delivery applications. The combination of four main ingredients,electric field and magnetic field (externally applied), electrical conductivity and enantiodiscrimination capability (intrinsic features ofthe object), makes these innovative miniaturized bipolar soft pumps perfect candidates for a multipurpose asymmetric detection. Insuch scenario inherent chirality can provide the breakthrough. It implies chirality and key functional properties to originate from thesame structural element endowing the selector with extraordinary chirality manifestations that can be propagated from molecular levelto the macroscopic one. Unprecedented recognition, in terms of energy differences, was recently observed, implementing inherentlychiral materials as enantiopure electrode surfaces. Recently, attractive potentialities of these systems were also exploited in the field ofbipolar electrochemistry and in the one of autonomous swimmers allowing to correlate the output signal with the concentration of theenantiomers present in solution. Such striking performance will prepare for the development of innovative systems with high impact inanalytical, biological and pharmaceutical fields considering the project interdisciplinarity.
  • Dati Generali
  • Aree Di Ricerca
  • Pubblicazioni

Dati Generali

Partecipanti

ARNABOLDI SERENA   Responsabile scientifico  

Dipartimenti coinvolti

Dipartimento di Chimica   Principale  

Tipo

Horizon Europe - European Research Council (ERC)

Finanziatore

EUROPEAN COMMISSION
Organizzazione Esterna Ente Finanziatore

Periodo di attività

Giugno 1, 2022 - Maggio 31, 2027

Durata progetto

60 mesi

Aree Di Ricerca

Settori


Settore CHIM/01 - Chimica Analitica

Parole chiave (3)

Analytical chemistry
Electrochemistry, electrodialysis, microfluidics, sensors
Surface modification
No Results Found

Pubblicazioni

Pubblicazioni (11)

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  • Articolo
Unlocking the power of chirality: Surface nanoarchitectonics of modified halloysite nanotubes for enantioselective recognition 
TALANTA
ELSEVIER B.V.
2025
Articolo
Open Access
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Enantioselective Discrimination via Wireless Chemiresistive Devices 
CHEMPLUSCHEM
WILEY ONLINE LIBRARY
2024
Articolo
Open Access
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Inherently Chiral Oligomers Based on Indole–Benzothiophene Core 
CHIRALITY
WILEY ONLINE LIBRARY
2024
Articolo
Open Access
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Miniaturized enantioselective tubular devices for the electromechanical wireless separation of chiral analytes 
CHEM
CELL PRESS
2024
Articolo
Open Access
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Unconventional approaches for chiral resolution 
ANALYTICAL AND BIOANALYTICAL CHEMISTRY
SPRINGER NATURE
2024
Articolo
Open Access
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Wireless Hollow Miniaturized Objects for Electroassisted Chiral Resolution 
ANALYTICAL CHEMISTRY
AMERICAN CHEMICAL SOCIETY
2024
Articolo
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Bipolar Electrochemical Analysis of Chirality in Complex Media through Miniaturized Stereoselective Light-Emitting Systems 
CHEMOSENSORS
MDPI
2023
Articolo
Open Access
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Self-Sustained Rotation of Lorentz Force-Driven Janus Systems 
JOURNAL OF PHYSICAL CHEMISTRY. C
AMERICAN CHEMICAL SOCIETY
2023
Articolo
Open Access
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Wireless electromechanical enantio-responsive valves 
CHIRALITY
WILEY BLACKWELL PUBLISHING
2023
Articolo
Partially Open Access
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Bipolar electrochemical rotors for the direct transduction of molecular chiral information 
BIOSENSORS & BIOELECTRONICS
ELSEVIER
2022
Articolo
Partially Open Access
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Recent advances in electrochemical transduction of chiral information 
CURRENT OPINION IN COLLOID & INTERFACE SCIENCE
ELSEVIER
2022
Articolo
Partially Open Access
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Realizzato con VIVO | Progettato da Cineca | 25.11.5.0