Pyroelectrically Driven •OH Generation by Barium Titanate and Palladium Nanoparticles

被引:59
作者
Benke, Annegret [1 ,2 ]
Mehner, Erik [3 ]
Rosenkranz, Marco [4 ]
Dmitrieva, Evgenia [4 ]
Leisegang, Tilmann [3 ]
Stoecker, Hartmut [3 ]
Pompe, Wolfgang [1 ,2 ]
Meyer, Dirk C. [3 ]
机构
[1] Tech Univ Dresden, Inst Mat Sci, D-01062 Dresden, Germany
[2] Tech Univ Dresden, Max Bergmann Ctr Biomat, D-01062 Dresden, Germany
[3] Tech Univ Bergakad Freiberg, Inst Expt Phys, D-09596 Freiberg, Germany
[4] Leibniz Inst Solid State & Mat Res Dresden IFW Dr, D-01069 Dresden, Germany
关键词
CRYSTAL-STRUCTURE; CYCLIC NITRONE; WORK FUNCTION; CO OXIDATION; BATIO3; RADICALS; WATER; TIO2; INACTIVATION; SUPEROXIDE;
D O I
10.1021/acs.jpcc.5b04589
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
The disinfection of bacteria by thermally excited pyroelectric materials in aqueous environments provides opportunities for the development of new means of sanitization. However, little is known about the formation of reactive oxygen species (ROS) at the surface of the thermally excited pyroelectric materials. To investigate the pyroelectrically driven ROS generation we performed OH radical specific measurements of thermally stimulated barium titanate nanoparticles in contact with palladium nanoparticles. Through electron spin resonance measurements with the spin trap BMPO (5-tert-butoxycarbonyl 5-methyl-1-pyrroline n-oxide) and fluorescence spectroscopy of 7-hydroxycoumarin, OH radical generation was detected, which confirms the hypothesis of pyroelectric ROS production. Since pyroelectric potential changes are insufficient for direct electrochemical OH radical generation, we propose a two-step charge-transfer model facilitated by intermittent contact between the palladium and the pyroelectric nanoparticles and the pyroelectric effect as the driving force for charge transfer.
引用
收藏
页码:18278 / 18286
页数:9
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