Department of Chemistry, Indian Institute of Technology Patna, Patna, 801103, Bihar, India.
National Institute of Pharmaceutical Education and Research, Hajipur, 844102, Bihar, India.
J Hazard Mater. 2020 Jun 15;392:122287. doi: 10.1016/j.jhazmat.2020.122287. Epub 2020 Feb 12.
The creation of a polymeric hydrogel from polyvinylpyrrolidone (PVP) cross-linked by Carbon Quantum Dots (CD) for the adsorption and photocatalytic degradation of both cationic and anionic dyes. PVP, an important biocompatible constituent and often surplus in cosmetic industry, was carboxylated through NaOH refluxing and covalently conjugated to surface amine functionality of CD derived from lemon juice and Cysteamine. The hybrid hydrogel was obtained from PVP-CD covalent conjugate by careful manipulation of pH and found to possess better rheological properties than only carboxylate-PVP. The monolayer physisorption of the dyes on the hydrogel was affected by hydrogen bonding, dispersion or inductive effect, and π-π interaction with the polymer backbone as well as the CD that followed pseudo-second-order kinetics. Degradation of the adsorbed dyes was instated by the unique Reactive Oxygen Species (ROS) generating ability of the CD embedded in the hydrogel matrix upon exposure to sunlight, the mechanism of which is also unveiled. The same CD-induced ROS was found to effectively annihilate both gram-positive and gram-negative bacteria in real polluted water in less than 10 min of photoexcitation of the hydrogel. The hydrogel was restored by mild acid wash that is able to perform dye adsorption and photo-degradation upto four cycles.
通过碳量子点(CD)交联聚乙烯吡咯烷酮(PVP)来制备聚合物水凝胶,用于吸附和光催化降解阳离子和阴离子染料。PVP 是一种重要的生物相容性成分,常用于化妆品行业,通过 NaOH 回流进行羧化,并通过共价键合柠檬和半胱氨酸衍生的 CD 表面的氨基功能化。通过仔细控制 pH 值,从 PVP-CD 共价偶联物中获得了混合水凝胶,并且发现其具有比仅羧化 PVP 更好的流变性能。染料在水凝胶上的单层物理吸附受氢键、色散或诱导效应以及与聚合物主链和随后的 CD 的π-π相互作用的影响,遵循伪二阶动力学。在水凝胶基质中嵌入 CD 后,通过独特的活性氧物种(ROS)生成能力来引发吸附染料的降解,其机制也被揭示。同样的 CD 诱导的 ROS 被发现能够在水凝胶的光激发不到 10 分钟内有效消除实际污染水中的革兰氏阳性和革兰氏阴性细菌。水凝胶可以通过温和的酸洗来恢复,该酸洗能够进行染料吸附和光降解,循环使用可达 4 次。