Esen Cansu, Kumru Baris
Max Planck Institute of Colloids and Interfaces, Department of Colloid Chemistry, Am Mühlenberg 1, 14476 Potsdam, Germany.
Beilstein J Org Chem. 2021 May 21;17:1323-1334. doi: 10.3762/bjoc.17.92. eCollection 2021.
Hydrogels are a special class of crosslinked hydrophilic polymers with a high water content through their porous structures. Post-modifications of hydrogels propose an attractive platform so that a variety of fresh functions, which are not arising from initial monomers, could be accessible on a parental network. Photoinduced post-modification of hydrogels by embedding semiconductor nanosheets would be of high interest and novelty. Here, a metal-free semiconductor graphitic carbon nitride (g-CN)-embedded hydrogel as an initial network was synthesized via redox-couple initiation under dark conditions. Post-photomodification of so-formed hydrogel, thanks to the photoactivity of the embedded g-CN nanosheets, was exemplified in two scenarios. The synthesis of 'hydrophobic hydrogel' is reported and its application in delayed cation delivery was investigated. Furthermore, pores of the initial hydrogel were modified by the formation of a secondary polymer network. Such a facile and straightforward synthetic protocol to manufacture functional soft materials will be of high interest in near future by the means of catalysis and agricultural delivery.
水凝胶是一类特殊的交联亲水性聚合物,通过其多孔结构具有高含水量。水凝胶的后修饰提供了一个有吸引力的平台,使得在母体网络上可以获得各种并非源于初始单体的新功能。通过嵌入半导体纳米片对水凝胶进行光诱导后修饰将具有高度的趣味性和新颖性。在此,通过氧化还原偶引发在黑暗条件下合成了一种以无金属半导体石墨相氮化碳(g-CN)嵌入的水凝胶作为初始网络。由于嵌入的g-CN纳米片的光活性,所形成的水凝胶的光后修饰在两种情况下得到了例证。报道了“疏水水凝胶”的合成,并研究了其在延迟阳离子递送中的应用。此外,通过形成二级聚合物网络对初始水凝胶的孔进行了修饰。这种制造功能软材料的简便直接的合成方案在不久的将来通过催化和农业递送手段将备受关注。