Evolutionary design of a DDPD model of ligation

Abstract

Ligation is a form of chemical self-assembly that involves dynamic formation of strong covalent bonds in the presence of weak associative forces. We study an extremely simple form of ligation by means of a dissipative particle dynamics (DPD) model extended to include the dynamic making and breaking of strong bonds, which we term dynamically bonding dissipative particle dynamics (DDPD). Then we use a chemical genetic algorithm (CGA) to optimize the model’s parameters to achieve a limited form of ligation of trimers—a proof of principle for the evolutionary design of self-assembling chemical systems.

Links

PhilArchive



    Upload a copy of this work     Papers currently archived: 91,386

External links

Setup an account with your affiliations in order to access resources via your University's proxy server

Through your library

  • Only published works are available at libraries.

Similar books and articles

Evolutionary guidance system: A community design project.Judith Bach - 2002 - World Futures 58 (5 & 6):417 – 423.
Molecules with very weak bonds: The edge of covalency.Jerome A. Berson - 2008 - Philosophy of Science 75 (5):947-957.
The evolution of evolutionary systems design.Alexander Laszlo & Kathia Laszlo - 2002 - World Futures 58 (5 & 6):351 – 363.
Periodicity, visualization, and design.Francis T. Marchese - 2012 - Foundations of Chemistry 15 (1):31-55.
Strategies of Model Building in Population Genetics.Anya Plutynski - 2006 - Philosophy of Science 73 (5):755-764.

Analytics

Added to PP
2010-12-22

Downloads
68 (#235,043)

6 months
3 (#992,474)

Historical graph of downloads
How can I increase my downloads?

Author's Profile

Mark Bedau
Reed College

References found in this work

No references found.

Add more references