Multi-functional MnO2 nanomaterials for photo-activated applications by a plasma-assisted fabrication route

被引:28
作者
Barreca, Davide [1 ,2 ]
Gri, Filippo [3 ,4 ]
Gasparotto, Alberto [3 ,4 ]
Carraro, Giorgio [3 ,4 ]
Bigiani, Lorenzo [3 ,4 ]
Altantzis, Thomas [5 ]
Zener, Bostjan [6 ]
Stangar, Urska Lavrencic [6 ,7 ]
Alessi, Bruno [8 ]
Padmanaban, Dilli Babu [8 ]
Mariotti, Davide [8 ]
Maccato, Chiara [3 ,4 ]
机构
[1] Padova Univ, CNR ICMATE, Via Marzolo 1, I-35131 Padua, Italy
[2] Padova Univ, INSTM, Dept Chem Sci, Via Marzolo 1, I-35131 Padua, Italy
[3] Padova Univ, Dept Chem Sci, Via Marzolo 1, I-35131 Padua, Italy
[4] INSTM, Via Marzolo 1, I-35131 Padua, Italy
[5] Univ Antwerp, EMAT, B-2020 Antwerp, Belgium
[6] Univ Ljubljana, Fac Chem & Chem Technol, Ljubljana 1000, Slovenia
[7] Univ Nova Gorica, Lab Environm & Life Sci, Nova Gorica 5000, Slovenia
[8] Univ Ulster, NIBEC, Coleraine BT37 0QB, Londonderry, North Ireland
基金
英国工程与自然科学研究理事会;
关键词
PHOTOCHEMICAL WATER OXIDATION; OXYGEN VACANCY FORMATION; THIN-FILMS; MAGNETIC-PROPERTIES; HIGHLY EFFICIENT; BETA-MNO2; MANGANESE; PERFORMANCE; ALPHA-MNO2; GROWTH;
D O I
10.1039/c8nr06468g
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Supported MnO2-based nanomaterials were fabricated on fluorine-doped tin oxide substrates using plasma enhanced-chemical vapor deposition (PE-CVD) between 100 degrees C and 400 degrees C, starting from a fluorinated Mn(II) diamine diketonate precursor. Growth experiments yielded beta-MnO2 with a hierarchical morphology tuneable from dendritic structures to quasi-1D nanosystems as a function of growth temperature, whose variation also enabled a concomitant tailoring of the system fluorine content, and of the optical absorption and band gap. Preliminary photocatalytic tests were aimed at the investigation of photoinduced hydrophilic (PH) and solid phase photocatalytic (PC) performances of the present nanomaterials, as well as at the photodegradation of Plasmocorinth B azo-dye aqueous solutions. The obtained findings highlighted an attractive system photoactivity even under visible light, finely tailored by fluorine content, morphological organization and optical properties of the prepared nanostructures. The results indicate that the synthesized MnO2 nanosystems have potential applications as advanced smart materials for anti-fogging/self-cleaning end uses and water purification.
引用
收藏
页码:98 / 108
页数:11
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