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                                  | 论文编号: | 
                                  122214O120130056 | 
                                 
                                
                                  | 第一作者所在部门: | 
                                  704组 | 
                                 
                                
                                  | 中文论文题目: | 
                                  
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                                  | 英文论文题目: | 
                                  Magnetic and electrochemical behavior of rhombohedral α-Fe2O3 nanostructures with (104) dominant facets
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                                  | 论文题目英文: | 
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                                  | 作者: | 
                                  刘忠
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                                  | 论文出处: | 
                                  
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                                  | 刊物名称: | 
                                  Particuology
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                                  | 年: | 
                                  2013
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                                  | 卷: | 
                                  11 | 
                                 
                                
                                  | 期: | 
                                  3 | 
                                 
                                
                                  | 页: | 
                                  327-333 | 
                                 
                                
                                  | 联系作者: | 
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                                  | 影响因子: | 
                                  
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                                  | 摘要: | 
                                  Uniform rhombohedral -Fe2O3 nanoparticles,~60 nm in size, were synthesized via a triphenylphosphine-assisted hydrothermal method. Scanning electron micrograph (SEM) and transmission electron micrograph (TEM) analyses showed that the as-synthesized rhombohedral nanoparticles were enclosed by six (1 0 4) planes. The concentration of triphenylphosphine played an important role in
morphological evolution of the -Fe2O3 nanoparticles. The as-prepared rhombohedral nanoparticles possessed remanent magnetization Mr of 2.6×10?3 emu/g and coercivity HC of 2.05 Oe, both lower than those of other α-Fe2O3 particles with similar size, indicating their potential applications as superparamagnetic precursor materials. Furthermore, these rhombohedral α-Fe2O3 nanoparticles exhibited good sensor capability toward H2O2 with a linear response in the concentration range of 2–20 mM. | 
                                 
                                
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