Pruchyathamkorn Jiratheep, Nguyen Bao-Nguyen T, Grommet Angela B, Novoveska Miroslava, Ronson Tanya K, Thoburn John D, Nitschke Jonathan R
Yusuf Hamied Department of Chemistry, University of Cambridge, Cambridge, UK.
Department of Chemistry, Randolph-Macon College, Ashland, VA, USA.
Nat Chem. 2024 Sep;16(9):1558-1564. doi: 10.1038/s41557-024-01549-2. Epub 2024 Jun 10.
Maxwell's demon describes a thought experiment in which a 'demon' regulates the flow of particles between two adjoining spaces, establishing a potential gradient without appearing to do work. This seeming paradox led to the understanding that sorting entails thermodynamic work, a foundational concept of information theory. In the past centuries, many systems analogous to Maxwell's demon have been introduced in the form of molecular information, molecular pumps and ratchets. Here we report a functional example of a Maxwell's demon that pumps material over centimetres, whereas previous examples operated on a molecular scale. In our system, this demon drives directional transport of o-fluoroazobenzene between the arms of a U-tube apparatus upon light irradiation, transiting through an aqueous membrane containing a coordination cage. The concentration gradient thus obtained is further harnessed to drive naphthalene transport in the opposite direction.
麦克斯韦妖描述了一个思想实验,其中一个“妖”调节两个相邻空间之间的粒子流动,在不做功的情况下建立一个势梯度。这个看似矛盾的现象引发了人们对分类需要热力学功的理解,这是信息论的一个基本概念。在过去几个世纪里,许多类似于麦克斯韦妖的系统以分子信息、分子泵和棘轮的形式被引入。在此,我们报告了一个能将物质泵送至数厘米距离的麦克斯韦妖的功能实例,而之前的实例是在分子尺度上运行的。在我们的系统中,这个妖在光照下驱动邻氟偶氮苯在U形管装置的两臂之间进行定向传输,通过一个含有配位笼的水膜。由此获得的浓度梯度进而被用于驱动萘在相反方向的传输。