A Critical Assessment of the Specific Role of Microwave Irradiation in the Synthesis of ZnO Micro- and Nanostructured Materials

被引:33
作者
Baghbanzadeh, Mostafa [3 ,4 ]
Skapin, Sreco D. [5 ]
Orel, Zorica Crnjak [1 ,2 ]
Kappe, C. Oliver [3 ,4 ]
机构
[1] Natl Inst Chem, Ljubljana 1000, Slovenia
[2] Ctr Excellence Polymer Mat & Technol, Ljubljana 1000, Slovenia
[3] Karl Franzens Univ Graz, CDLMC, A-8010 Graz, Austria
[4] Karl Franzens Univ Graz, Inst Chem, A-8010 Graz, Austria
[5] Jozef Stefan Inst, Adv Mat Dept, Ljubljana 1000, Slovenia
关键词
hydrothermal synthesis; microrods; microwave chemistry; nanoparticles; zinc oxide; ZINC-OXIDE NANOSTRUCTURES; ASSISTED SYNTHESIS; ORGANIC-SYNTHESIS; NANOWIRE ARRAYS; SILICON-CARBIDE; CHEMISTRY; NANORODS; GROWTH; ROUTE; NANOPARTICLES;
D O I
10.1002/chem.201103548
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A rapid, microwave-assisted hydrothermal method has been developed to access ultrafine ZnO hexagonal microrods of about 34 mu m in length and 200-300 nm in width by using a 1:5 zinc nitrate/urea precursor system. The size and morphology of these ZnO materials can be influenced by subtle changes in precursor concentration, solvent system, and reaction temperature. Optimized conditions involve the use of a 1:3 water/ethylene glycol solvent system and 10 min microwave heating at 150 degrees C in a dedicated single-mode microwave reactor with internal temperature control. Carefully executed control experiments ensuring identical heating and cooling profiles, stirring rates, and reactor geometries have demonstrated that for these preparations of ZnO microrods no differences between conventional and microwave dielectric heating are observed. The resulting ZnO microrods exhibited the same crystal phase, primary crystallite size, shape, and size distribution regardless of the heating mode. Similar results were obtained for the ultrafast preparation of ZnO nanoparticles with diameters of approximately 20 nm, synthesized by means of a nonaqueous solgel process at 200 degrees C from a Zn(acac)2 (acac=acetylacetonate) precursor in benzyl alcohol. The specific role of microwave irradiation in enhancing these nanomaterial syntheses can thus be attributed to a purely thermal effect as a result of higher reaction temperatures, more rapid heating, and a better control of process parameters.
引用
收藏
页码:5724 / 5731
页数:8
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