Boufflet Pierre, Casey Abby, Xia Yiren, Stavrinou Paul N, Heeney Martin
Dept. Chemistry and Centre for Plastic Electronics , Imperial College London , Exhibition Rd , London , SW7 2AZ , UK . Email:
Dept. Physics and Centre for Plastic Electronics , Imperial College London , Exhibition Rd , London , SW7 2AZ , UK.
Chem Sci. 2017 Mar 1;8(3):2215-2225. doi: 10.1039/c6sc04427a. Epub 2016 Dec 15.
A convenient method of introducing pentafluorobenzene (PFB) as a single end-group in polythiophene derivatives is reported quenching of the polymerization. We demonstrate that the PFB-group is a particularly useful end-group due to its ability to undergo fast nucleophilic aromatic substitutions. Using this molecular handle, we are able to quantitatively tether a variety of common nucleophiles to the polythiophene backbone. The mild conditions required for the reaction allows sensitive functional moieties, such as biotin or a cross-linkable trimethoxysilane, to be introduced as end-groups. The high yield enabled the formation of a diblock rod-coil polymer from equimolar reactants under transition metal-free conditions at room temperature. We further demonstrate that water soluble polythiophenes end-capped with PFB can be prepared the hydrolysis of an ester precursor, and that such polymers are amenable to functionalization under aqueous conditions.
报道了一种在聚噻吩衍生物中引入五氟苯(PFB)作为单一端基的简便方法——聚合淬灭。我们证明,由于PFB基团能够进行快速亲核芳香取代反应,它是一种特别有用的端基。利用这个分子手段,我们能够将各种常见亲核试剂定量地连接到聚噻吩主链上。该反应所需的温和条件使得诸如生物素或可交联三甲氧基硅烷等敏感功能基团能够作为端基引入。高产率使得在室温下无过渡金属条件下由等摩尔反应物形成二嵌段棒-线圈聚合物成为可能。我们进一步证明,可以通过酯前体的水解制备以PFB封端的水溶性聚噻吩,并且此类聚合物在水性条件下易于功能化。