Organic–inorganic hybrid assemblies based on Ti-substituted polyoxometalates for photocatalytic dye degradation?
CrystEngComm Pub Date: 2015-03-18 DOI: 10.1039/C4CE02505A
Abstract
Two new organic–inorganic hybrid compounds, [N(CH3)4]6[CuIILo][(Ti2O)(PW11O39)2]·4H2O (1) and [N(CH3)4]2[H2bpp]2[CuIILo][(Ti2O)(PW11O39)2]·1.5H2O (2) (Lo = 1,2-bis(3-(2-pyridyl)pyrazole-1-ylmethyl)benzene, bpp = 1,3-bis(4-piperidyl)propane), based on Ti-substituted polyoxometalates (abbr. Ti-POMs) and the metal–organic linking units constructed by CuII ions and bichelate-bridging ligands (Lo), have been hydrothermally prepared. The two compounds were characterized by elemental analyses, IR spectra, TG analyses, XPS spectra, powder X-ray diffraction and single-crystal X-ray diffraction analyses. Both compounds contain a rare corner-sharing double-Keggin type POM architecture in the Ti-POM species. In 1 and 2, the double-Keggin-type polyoxoanions connect with the butterfly-type [CuIILo] units to form a 1-D chain and a square plane, respectively. The photocatalytic properties of compounds 1 and 2 were investigated with the methylene blue (MB) degradation model under UV irradiation, indicating good photocatalytic activity. Furthermore, to compare the photocatalytic properties of the Keggin-type Ti-POMs with those of traditional Keggin-type POMs, another compound [CuILo]4[PW12O40] (3) was synthesized by combining typical Keggin-type polyoxoanions with the metal–organic [CuILo] units. A series of MB degradation experiments suggest that the Ti-POMs exhibit better photocatalytic activity than typical Keggin-type saturated POM species.
Recommended Literature
- [1] An all-solid-state imprinted polymer-based potentiometric sensor for determination of bisphenol S? Rongning Liang,Tanji Yin,Ruiqing Yao,Wei QinRSC Adv., 2016,6, 73308-73312 10.1039/C6RA14461F
- [2] An artificial photosynthetic system for photoaccumulation of two electrons on a fused dipyridophenazine (dppz)–pyridoquinolinone ligand? Philipp Traber,Stephan Kupfer,Stefanie Gr?fe,Isabelle Baussanne,Martine Demeunynck,Jean-Marie Mouesca,Serge Gambarelli,Vincent Artero,Murielle Chavarot-KerlidouChem. Sci., 2018,9, 4152-4159 10.1039/C7SC04348A
- [3] An amorphous lanthanum–iridium solid solution with an open structure for efficient water splitting? Wei Sun,Chenglong Ma,Xinlong Tian,Jianjun Liao,Ji Yang,Chengjun Ge,Weiwei HuangJ. Mater. Chem. A, 2020,8, 12518-12525 10.1039/D0TA03351K
- [4] An artificial CO-releasing metalloprotein built by histidine-selective metallation? Inês S. Albuquerque,Hélia F. Jeremias,Miguel Chaves-Ferreira,Dijana Matak-Vinkovic,Omar Boutureira,Carlos C. Rom?oChem. Commun., 2015,51, 3993-3996 10.1039/C4CC10204E
- [5] An amplified fluorescence detection of T4 polynucleotide kinase activity based on coupled exonuclease III reaction and a graphene oxide platform? Ni-Na Sun,Fengli Qu,Xiaobing Zhang,Shufang Zhang,Jinmao YouAnalyst, 2015,140, 1827-1831 10.1039/C4AN01953A
- [6] An amphoteric reactivity of a mixed-valent bis(μ-oxo)dimanganese(iii,iv) complex acting as an electrophile and a nucleophile? Muniyandi Sankaralingam,So Hyun Jeon,Yong-Min Lee,Mi Sook Seo,Wonwoo NamDalton Trans., 2016,45, 376-383 10.1039/C5DT04292E
- [7] An aptamer-based keypad lock system? Yaqing Liu,Jiangtao Ren,Jing Li,Jiyang Liu,Erkang WangChem. Commun., 2012,48, 802-804 10.1039/C1CC15979H
- [8] Aggregation-induced emission enhancement in halochalcones? Patricia A. A. M. Vaz,Jo?o Rocha,Artur M. S. SilvaNew J. Chem., 2016,40, 8198-8201 10.1039/C6NJ01387B
- [9] Alumina coating on 5 V lithium cobalt fluorophosphate cathode material for lithium secondary batteries – synthesis and electrochemical properties? S. Amaresh,K. Karthikeyan,K. J. Kim,Y. S. LeeRSC Adv., 2014,4, 23107-23115 10.1039/C4RA02318H
- [10] An apparatus for determining small amounts of alchohol in sour milk and urine Analyst, 1964,89, 272-275 10.1039/AN9648900272
Journal Name:CrystEngComm
research_products
-
CAS no.: 89640-58-4