Al Shehimy Shaymaa, Le Hai-Dang, Amano Shuntaro, Di Noja Simone, Monari Luca, Ragazzon Giulio
University of Strasbourg, CNRS, Institut de Science et d'Ingénierie Supramoléculaires (ISIS) UMR 7006, 8 allée Gaspard Monge, 67000, Strasbourg, France.
Angew Chem Int Ed Engl. 2024 Nov 4;63(45):e202411554. doi: 10.1002/anie.202411554. Epub 2024 Sep 12.
The overwhelming majority of artificial chemical reaction networks respond to stimuli by relaxing towards an equilibrium state. The opposite response-moving away from equilibrium-can afford the endergonic synthesis of molecules, of which only rare examples have been reported. Here, we report six examples of Diels-Alder adducts formed in an endergonic process and use this strategy to realize their stepwise accumulation. Indeed, systems respond to repeated occurrences of the same stimulus by increasing the amount of adduct formed, with the final network distribution depending on the number of stimuli received. Our findings indicate how endergonic processes can contribute to the transition from responsive to adaptive systems.
绝大多数人工化学反应网络通过向平衡态弛豫来响应刺激。相反的响应——远离平衡态——能够实现分子的吸能合成,而仅有极少数此类例子被报道过。在此,我们报告了六个在吸能过程中形成的狄尔斯-阿尔德加合物的例子,并利用这一策略实现了它们的逐步积累。实际上,系统通过增加加合物的生成量来响应相同刺激的重复出现,最终的网络分布取决于所接收刺激的数量。我们的研究结果表明了吸能过程如何有助于从响应性系统向适应性系统的转变。