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聚(七嗪酰亚胺)钾与TiC衍生的TiO耦合作为高效降解污染物的复合光催化剂

Potassium Poly(heptazine imide) Coupled with TiC MXene-Derived TiO as a Composite Photocatalyst for Efficient Pollutant Degradation.

作者信息

Chen Binbin, Lu Weiwei, Xu Peng, Yao Kaisheng

机构信息

School of Chemical Engineering and Pharmaceutics, Henan University of Science and Technology, Luoyang, Henan 471003, China.

出版信息

ACS Omega. 2023 Mar 20;8(12):11397-11405. doi: 10.1021/acsomega.3c00150. eCollection 2023 Mar 28.

Abstract

The photocatalytic degradation of pollutants is an effective and sustainable way to solve environmental problems, and the key is to develop an efficient, low-cost, and stable photocatalyst. Polymeric potassium poly(heptazine imide) (K-PHI), as a new member of the carbon nitride family, is a promising candidate but is characterized by a high charge recombination rate. To solve this problem, K-PHI was in-situ composited with MXene TiC-derived TiO to construct a type-II heterojunction. The morphology and structure of composite K-PHI/TiO photocatalysts were characterized via different technologies, including TEM, XRD, FT-IR, XPS, and UV-vis reflectance spectra. Robust heterostructures and tight interactions between the two components of the composite were verified. Furthermore, the K-PHI/TiO photocatalyst showed excellent activity for Rhodamine 6G removal under visible light illumination. When the weight percent of K-PHI in the original mixture of K-PHI and TiC was set to 10%, the prepared K-PHI/TiO composite photocatalyst shows the highest photocatalytic degradation efficiency as high as 96.3%. The electron paramagnetic resonance characterization indicated that theOH radical is the active species accounting for the degradation of Rhodamine 6G.

摘要

光催化降解污染物是解决环境问题的一种有效且可持续的方法,关键在于开发高效、低成本且稳定的光催化剂。聚合聚(七嗪酰亚胺)钾(K-PHI)作为氮化碳家族的新成员,是一种有前景的候选材料,但存在电荷复合率高的特点。为解决这一问题,将K-PHI与MXene TiC衍生的TiO原位复合以构建II型异质结。通过不同技术对复合K-PHI/TiO光催化剂的形貌和结构进行了表征,包括透射电子显微镜(TEM)、X射线衍射(XRD)、傅里叶变换红外光谱(FT-IR)、X射线光电子能谱(XPS)和紫外可见反射光谱。证实了复合材料的两种组分之间存在稳固的异质结构和紧密相互作用。此外,K-PHI/TiO光催化剂在可见光照射下对罗丹明6G的去除表现出优异的活性。当K-PHI与TiC原始混合物中K-PHI的重量百分比设定为10%时,制备的K-PHI/TiO复合光催化剂显示出高达96.3%的最高光催化降解效率。电子顺磁共振表征表明,·OH自由基是导致罗丹明6G降解的活性物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f039/10061626/6ce928c5c596/ao3c00150_0002.jpg

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