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负载纳米ZnO麻纤维预氧丝的制备和光催化性能 被引量:3
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作者 张越 张秀林 +1 位作者 刘庆生 邓炳耀 《材料导报(纳米与新材料专辑)》 EI CAS 2011年第1期110-112,共3页
采用金属醇盐方法,以二水合醋酸锌、氢氧化钠、乙醇为原料,制备出颗粒均匀、分散稳定的纳米ZnO溶胶,并且将其成功负载在苎麻纤维上,经过140℃煅烧2h后制得负载纳米ZnO的麻纤维预氧丝。采用扫描电镜(SEM)、能谱元素定性定量分析(EDAX)、... 采用金属醇盐方法,以二水合醋酸锌、氢氧化钠、乙醇为原料,制备出颗粒均匀、分散稳定的纳米ZnO溶胶,并且将其成功负载在苎麻纤维上,经过140℃煅烧2h后制得负载纳米ZnO的麻纤维预氧丝。采用扫描电镜(SEM)、能谱元素定性定量分析(EDAX)、纳米粒度分析及相关分析软件,分析和表征了预氧丝的表观形貌、元素含量及纳米ZnO颗粒粒径。通过对亚甲基蓝染料模拟工业废水进行光催化实验,证明制备的负载纳米ZnO的麻纤维预氧丝材料具备一定的光催化作用,光催化降解率为75.52%。 展开更多
关键词 纳米zno溶胶 苎麻纤维预氧丝 亚甲基蓝 光催化
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Performance of carbon-coated nano-ZnO prepared by carbonizing gel precursor as anodic material for secondary alkaline Zn batteries 被引量:3
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作者 Ke PENG Zhi-jian ZHANG +3 位作者 Ze-jun ZHAO Chao YANG Zhong-liang TIAN Yan-qing LAI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第10期2151-2159,共9页
Although carbon coating can improve the cycle life of anode for alkaline Zn batteries, the specific capacity reported is still lower compared with nanosized ZnO. Herein, carbon-coated nanosized ZnO(nano-ZnO@C) was syn... Although carbon coating can improve the cycle life of anode for alkaline Zn batteries, the specific capacity reported is still lower compared with nanosized ZnO. Herein, carbon-coated nanosized ZnO(nano-ZnO@C) was synthesized by one-step heat treatment from a gel precursor in N2. Commercial ZnO and homemade ZnO prepared similarly in air atmosphere were studied for comparison. Structure analysis displayed that both nano-ZnO@C and homemade ZnO had a porous hierarchical agglomerated architecture produced from primary nanoparticles with a diameter of approximately 100 nm as building blocks. Electrochemical performance measurements showed that nano-ZnO@C displayed the highest electrochemical activity, the lowest electrode resistance, the highest discharge capacity(622 m A·h/g), and the best cyclic stability. These properties were due to the combination of nanosized ZnO and the physical capping of carbon, which maintained the high utilization efficiency of nano-ZnO, and simultaneously prevented dendrite growth and densification of the anode. 展开更多
关键词 carbon-coated nano-zno sol-gel method porous hierarchical architecture Zn-Ni battery
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