Cation-Modulated Rotary Speed in a Light-Driven Crown Ether Functionalized Molecular Motor

光驱动冠醚功能化分子马达中阳离子调控的旋转速度

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Abstract

The design and synthesis of an overcrowded-alkene based molecular motor featuring a crown ether integrated in its stator structure has been accomplished. The photostationary state ratios and rotational speed of this motor can be modulated by cation coordination to the crown ether moiety, which can be reversed upon the addition of a competing chelating agent, thus achieving a dynamic control over the rotational behavior of the motor.

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