In the present study, the potential activity of ZnPc/m-C 3 N 4 nanocomposites for photocatalytic removal of phenol under visible light irradiation was revealed. It was confirmed that m-C 3 N 4 showed adsorption-desorption characteristic of mesoporous material with pore size of 3.3 nm and specific surface area of 41 m 2 g -1 . A series of ZnPc/m-C 3 N 4 nanocomposites was synthesized by impregnation method. From X-ray diffraction (XRD) patterns, the addition of small amount of ZnPc did not affect the structure of m-C 3 N 4 . Besides diffraction peaks of C 3 N 4 at 2θ of 13.0° and 27.6°, an additional small diffraction peak of ZnPc was detected at 2θ of 6.95° for ZnPc/m-C 3 N 4 . The successful impregnation of ZnPc onto the m-C 3 N 4 was also proved from the diffuse reflectance UV-Visible spectroscopy, which an absorption peak was detected at 696-700 nm due to Q-band, corresponding to π-π* transitions.
Shu Chin LeeHendrik O. LintangLeny Yuliati
Amanj KheradmandYuxiang ZhuWenwen ZhangAleksei N. MarianovYijiao Jiang
Chun ChangLingyan ZhuShanfeng WangXiaolong ChuLongfei Yue
Chun Chang (415999)Lingyan Zhu (519291)Shanfeng Wang (1641775)Xiaolong Chu (1823074)Longfei Yue (1823077)
Shu Chin LeeHendrik O. LintangSalasiah EndudLeny Yuliati