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Non-equilibrium self-assembly of a dynamic polymer exploiting an energy ratchet mechanism

EURAXESS hosting organisation · Plusieurs pays européens

The primary objective of this project is to develop chemical fuel-driven self-assembled polymers. An energy ratchet mechanism will be exploited to populate a non-equilibrium self-assembled structure. A celi uses ATP and other thermodynamically activated molecules {GTP, Actyl-coA, ... ) as chemical fuel to performenergy-demanding processes such as tempora! contrai aver microtubule structures and directional motion of kinesin motors. lt is important to mention that the fundamental principle of these chemically fueled biologica I processes is to compensate the energy requirement of the endergonic process by using the free energy released from an exergonic process (such as hydrolysis of ATP to AMP and Pi). The kinetically stable polymer will provide a sophisticated synthetic mimic of the biolo

At a glance
Where
Multiple European countries
Deadline
2026-09-30
Funding
Funding described on programme page
Board
EURAXESS

Who can apply

Criteria stated by the funder on the official source.

Nationality
EURAXESS vacancies rarely print a nationality table. Confirm whether applicants from Tunisia can apply and whether a residence/work permit pathway exists on the employer page.
Non indiqué
Education
Academic requirements are listed on the EURAXESS vacancy; match your degree level to the stated profile (often R1–R4).
Non indiqué

Funding and what it does not cover

Funding details were taken from the official programme page text. Confirm the current call before applying.