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原位生长的α-Fe_(2)O_(3)/ZnO异质纳米棒阵列对乙醇气体的高选择性检测 被引量:2
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作者 隋丽丽 黄微微 +8 位作者 王平 徐英明 程晓丽 霍丽华 姜惠烨 赵冰 张文治 王政军 刘亚红 《应用化学》 CAS CSCD 北大核心 2021年第7期857-865,共9页
采用两步溶液法在陶瓷管上原位生长了ZnO纳米棒阵列,然后以ZnO纳米棒为载体,通过水热法在其表面负载α-Fe_(2)O_(3)纳米粒子,生成异质α-Fe_(2)O_(3)/ZnO复合纳米材料。α-Fe_(2)O_(3)/ZnO纳米棒直径30~80 nm,长1μm左右,交叉排列形成... 采用两步溶液法在陶瓷管上原位生长了ZnO纳米棒阵列,然后以ZnO纳米棒为载体,通过水热法在其表面负载α-Fe_(2)O_(3)纳米粒子,生成异质α-Fe_(2)O_(3)/ZnO复合纳米材料。α-Fe_(2)O_(3)/ZnO纳米棒直径30~80 nm,长1μm左右,交叉排列形成纳米棒阵列,α-Fe_(2)O_(3)纳米粒子粒径约10 nm,均匀分布在ZnO纳米棒表面。将纯ZnO和α-Fe_(2)O_(3)/ZnO纳米棒阵列制成气敏元件,测试并对比了2种气敏元件的气敏性能,揭示其气敏机理。结果表明:α-Fe_(2)O_(3)纳米粒子的复合显著提高了ZnO纳米棒阵列对乙醇气体的灵敏度和选择性,在工作温度370℃时,对100μL/L乙醇气体的响应值为85.4,是同条件下ZnO器件对乙醇响应值(9.4)的9.1倍,响应时间7 s,最低检出限为0.01μL/L。相关研究可以应用于痕量乙醇的快速、高灵敏度和高选择性检测。 展开更多
关键词 原位生长法 α-Fe_(2)O_(3) ZNO 纳米棒阵列 异质结构
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Supercapacitor Performance of Hollow Carbon Spheres by Direct Pyrolysis of Melamine-formaldehyde Resin Spheres 被引量:6
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作者 MA Fang-wei SUN Li-ping +4 位作者 ZHAO Hui LI Qiang huo li-hua XIA Tian GAO Shan 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2013年第4期735-742,共8页
The nitrogen and oxygen co-doped hollow carbon spheres(HCSs) were prepared via a simple pyrolysis of solid melamine-formaldhyde resin spheres. The carbonization temperature has an important influence on the specific... The nitrogen and oxygen co-doped hollow carbon spheres(HCSs) were prepared via a simple pyrolysis of solid melamine-formaldhyde resin spheres. The carbonization temperature has an important influence on the specific surface area, pore-size distribution and heteroatom contents of HCSs. The synergistic effects of those physical and chemical properties on supercapacitor performance were systematically investigated. Among the HCSs obtained at different temperatures, HCSs-800(co-doped HCSs at 800℃) exhibits the best reversible specific capacitance in 2 mol/L H2SO4 electrolyte and meanwhile maintains a high-class capacitance retention capability. The nitrogen heteroatoms were confirmed to play a crucial role in improving capacitance in an acid medium. This kind of nitrogen doved HCSs is a potential candidate for an efficient electrode material for supercapacitors. 展开更多
关键词 Hollow carbon sphere PYROLYSIS Melamine-formaldehyde resin SUPERCAPACITOR Nitrogen-dope
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