Toyoda Ryojun, Hoang Nong V, Moghaddam Kiana Gholamjani, Crespi Stefano, Pooler Daisy R S, Faraji Shirin, Pshenichnikov Maxim S, Feringa Ben L
Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, 9747 AG, Groningen, the Netherlands.
Department of Chemistry, Graduate School of Science, Tohoku University, 6-3 Aramaki-Aza-Aoba, Aoba-ku, Sendai, 980-8578, Japan.
Nat Commun. 2022 Sep 30;13(1):5765. doi: 10.1038/s41467-022-33177-0.
Photoactuators and photoluminescent dyes utilize light to perform mechanical motion and undergo spontaneous radiation emission, respectively. Combining these two functionalities in a single molecule would benefit the construction of advanced molecular machines. Due to the possible detrimental interaction between the two light-dependent functional parts, the design of hybrid systems featuring both functions in parallel remains highly challenging. Here, we develop a light-driven rotary molecular motor with an efficient photoluminescent dye chemically attached to the motor, not compromising its motor function. This molecular system shows efficient rotary motion and bright photoluminescence, and these functions can be addressed by a proper choice of excitation wavelengths and solvents. The moderate interaction between the two parts generates synergistic effects, which are beneficial for lower-energy excitation and chirality transfer from the motor to the photoluminescent dye. Our results provide prospects towards photoactive multifunctional systems capable of carrying out molecular rotary motion and tracking its location in a complex environment.
光致动器和光致发光染料分别利用光来执行机械运动和进行自发辐射发光。将这两种功能结合在一个分子中,将有利于先进分子机器的构建。由于这两个依赖光的功能部分之间可能存在有害相互作用,设计同时具备这两种功能的混合系统仍然极具挑战性。在此,我们开发了一种光驱动旋转分子马达,其化学连接了一种高效光致发光染料,且不影响其马达功能。该分子系统展现出高效的旋转运动和明亮的光致发光,并且这些功能可以通过适当选择激发波长和溶剂来实现。这两个部分之间适度的相互作用产生了协同效应,这有利于低能量激发以及从马达到手致发光染料的手性转移。我们的结果为能够进行分子旋转运动并在复杂环境中追踪其位置的光活性多功能系统提供了前景。