Biagini Chiara, Di Pietri Flaminia, Mandolini Luigi, Lanzalunga Osvaldo, Di Stefano Stefano
Dipartimento di Chimica, Istituto CNR di Metodologie Chimiche-IMC, Sezione Meccanismi di Reazione, Università degli Studi di Roma "La Sapienza", P.le A. Moro 5, 00185, Rome, Italy.
Chemistry. 2018 Jul 17;24(40):10122-10127. doi: 10.1002/chem.201800474. Epub 2018 Jun 12.
Back and forth motions of the acid-base-operated molecular switch 1 are photo-controlled by irradiation of a solution, which also contains the photolabile pre-fuel 4. The photo-stimulated deprotection of the pre-fuel produces controlled amounts of acid 2, the base-promoted decarboxylation of which fuels the back and forth motions of the Sauvage-type [2]-catenane-based molecular switch. Because switch 1 and pre-fuel 4 do not interact in the absence of irradiation, an excess of the latter with respect to 1 can be added to the solution from the beginning. In principle, photocontrol of the back and forth motions of any molecular machine, the operation of which is guided by protonation/deprotonation, could be attained by use of pre-fuel 4, or of any other protected acid that undergoes deprotection by irradiation with light at a proper wavelength, followed by decarboxylation under conveniently mild conditions.
酸碱操作分子开关1的来回运动通过照射一种溶液来进行光控,该溶液中还含有光不稳定的预燃料4。预燃料的光刺激脱保护产生可控量的酸2,酸2的碱促进脱羧作用为基于索瓦热型[2]连环烷的分子开关的来回运动提供动力。由于在没有照射的情况下开关1和预燃料4不相互作用,因此可以从一开始就向溶液中加入相对于1过量的后者。原则上,通过使用预燃料4或任何其他在适当波长的光照射下进行脱保护、然后在适当温和条件下进行脱羧的受保护酸,可以实现对任何由质子化/去质子化引导操作的分子机器的来回运动的光控。