Helical Molecular Springs with Varying Spring Constants.

Angew Chem Int Ed Engl

Departments of Industrial & Physical Pharmacy, Chemistry, and Medicinal Chemistry & Molecular Pharmacology, Purdue University, 575 Stadium Mall Drive, West Lafayette, IN 47907, USA.

Published: December 2022

AI Article Synopsis

  • Researchers developed a method to create helical ladder polymers with different spring constants using chirality-assisted synthesis.
  • These polymers maintain their shape under stress, behaving like traditional springs instead of unfolding.
  • The study found that increasing the diameter of the helix enhances molecular flexibility, providing guidelines for designing new spring-like materials with diverse mechanical properties.

Article Abstract

We report a general synthetic route toward helical ladder polymers with varying spring constants, built with chirality-assisted synthesis (CAS). Under tension and compression, these shape-persistent structures do not unfold, but rather stretch and compress akin classical Hookean springs. Our synthesis is adaptable to helices with different pitch and diameter, which allowed us to investigate how molecular flexibility in solution depends on the exact geometry of the ladder polymers. Specifically, we showed with molecular dynamic simulations and by measuring the longitudinal H NMR relaxation times (T ) for our polymers at different Larmor frequencies, that increasing the helix diameter leads to increased flexibility. Our results present initial design rules for tuning the mechanical properties of intrinsically helical ladder polymers in solution, which will help inspire a new class of robust, spring-like molecular materials with varying mechanical properties.

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Source
http://dx.doi.org/10.1002/anie.202209772DOI Listing

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