Showing 101 - 120 results of 57,677 for search '(( significantly increased decrease ) OR ( significant side differences ))', query time: 0.78s Refine Results
  1. 101

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…Potential energy surface analysis and variable-temperature single-crystal X-ray diffraction analysis are used to figure out the effect of side-chain groups on their mechanically responsive and thermosalient properties, which demonstrate that the regulation of side-chain groups from <b>phen</b> to <b>bpy</b> and then to <b>dmbpy</b> in these triple-helix CPs can lead to a gradual decrease in interchain π–π interactions but an increase in the steric hindrance and subsequently exert a significant influence on the apparent mechanical properties and thermosalient behaviors.…”
  2. 102

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…Potential energy surface analysis and variable-temperature single-crystal X-ray diffraction analysis are used to figure out the effect of side-chain groups on their mechanically responsive and thermosalient properties, which demonstrate that the regulation of side-chain groups from <b>phen</b> to <b>bpy</b> and then to <b>dmbpy</b> in these triple-helix CPs can lead to a gradual decrease in interchain π–π interactions but an increase in the steric hindrance and subsequently exert a significant influence on the apparent mechanical properties and thermosalient behaviors.…”
  3. 103

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…Potential energy surface analysis and variable-temperature single-crystal X-ray diffraction analysis are used to figure out the effect of side-chain groups on their mechanically responsive and thermosalient properties, which demonstrate that the regulation of side-chain groups from <b>phen</b> to <b>bpy</b> and then to <b>dmbpy</b> in these triple-helix CPs can lead to a gradual decrease in interchain π–π interactions but an increase in the steric hindrance and subsequently exert a significant influence on the apparent mechanical properties and thermosalient behaviors.…”
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