Low-Temperature Route to Crystalline Titania Network Structures in Thin Films

被引:21
|
作者
Rawolle, Monika [1 ]
Braden, Erik V. [1 ]
Niedermeier, Martin A. [1 ]
Magerl, David [1 ]
Sarkar, Kuhu [1 ]
Froeschl, Thomas [2 ]
Huesing, Nicola [2 ]
Perlich, Jan [3 ]
Mueller-Buschbaum, Peter [1 ]
机构
[1] Tech Univ Munich, Dept Phys, Lehrstuhl Funkt Mat, D-85748 Garching, Germany
[2] Salzburg Univ, FB Mat Forsch & Phys, A-5020 Salzburg, Austria
[3] HASYLAB DESY, D-22607 Hamburg, Germany
关键词
block copolymers; low-temperature synthesis; mesoporous materials; sol-gel processes; titania; SURFACE-AREA; RUTILE TIO2; SOLAR-CELLS; ANATASE; PHOTOLUMINESCENCE; DIOXIDE; NANOPARTICLES; MORPHOLOGY; PARTICLES; OXIDATION;
D O I
10.1002/cphc.201200056
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A low temperature route to crystalline titania nanostructures in thin films is presented. The synthesis is performed by the combination of sol-gel processes, using a novel precursor for this kind of application, an ethylene glycol-modified titanate (EGMT), and the structure templating by micro-phase separation of a di-block copolymer. Different temperatures around 100 degrees C are investigated. The nanostructure morphology is examined with scanning electron microscopy, whereas the crystal structure and thin film compositions are examined by scattering methods. Optoelectronic measurements reveal the band-gap energies and sub-band states of the titania films. An optimum titania thin film is created at temperatures not higher than 90 degrees C, regarding sponge-like morphology with pore sizes of 25-30 nm, porosity of up to 71?% near the sample surface, and crystallinity of titania in the rutile phase. The low temperature during synthesis is of high importance for photovoltaic applications and renders the resulting titania films interesting for future energy solutions.
引用
收藏
页码:2412 / 2417
页数:6
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