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以芘-炔为基块的共价有机骨架材料的设计合成与表征 被引量:1
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作者 张婷婷 王海涛 +3 位作者 马和平 孙福兴 崔小强 朱广山 《化学学报》 SCIE CAS CSCD 北大核心 2013年第12期1598-1602,共5页
以四边形基块1,3,6,8-四炔芘和二结点连接体9,10-二溴蒽通过Sonogashira-Hagihara偶联反应构建了一种多孔芳香有机骨架材料PAF-27.差热重分析结果表明该材料具有一定的热稳定性,在空气中可以稳定到320℃,另外,它在一些常见的有机溶剂中... 以四边形基块1,3,6,8-四炔芘和二结点连接体9,10-二溴蒽通过Sonogashira-Hagihara偶联反应构建了一种多孔芳香有机骨架材料PAF-27.差热重分析结果表明该材料具有一定的热稳定性,在空气中可以稳定到320℃,另外,它在一些常见的有机溶剂中能稳定存在,证明了该材料具有一定的化学稳定性.N2吸附结果表明,该材料的比表面积为560m2/g,平均孔径约为0.63 nm.由于该材料骨架结构中含有丰富的苯环和炔这样的基团,加上材料本身较大的比表面积和较窄的孔径分布,将在气体的选择分离方面有潜在的应用前景. 展开更多
关键词 多孔芳香有机骨架材料 Sonogashira—Hagihara偶联反应 热稳定性和化学稳定性 较大的比表面积 较窄的孔径分布
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Porous spherical NiO@NiMoO4@PPy nanoarchitectures as advanced electrochemical pseudocapacitor materials 被引量:8
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作者 Ting-Feng Yi Li-Ying Qiu +6 位作者 Jie Mei Si-Yu Qi Ping Cui Shaohua Luo Yan-Rong Zhu Ying Xie Yan-Bing He 《Science Bulletin》 SCIE EI CAS CSCD 2020年第7期546-556,M0004,共12页
In this work, a rational design and construction of porous spherical Ni O@NiMoO4 wrapped with PPy was reported for the application of high-performance supercapacitor(SC). The results show that the NiMoO4 modification ... In this work, a rational design and construction of porous spherical Ni O@NiMoO4 wrapped with PPy was reported for the application of high-performance supercapacitor(SC). The results show that the NiMoO4 modification changes the morphology of Ni O, and the hollow internal morphology combined with porous outer shell of Ni O@NiMoO4 and Ni O@NiMoO4@PPy hybrids shows an increased specific surface area(SSA), and then promotes the transfer of ions and electrons. The shell of NiMoO4 and PPy with high electronic conductivity decreases the charge-transfer reaction resistance of Ni O, and then improves the electrochemical kinetics of Ni O. At 20 Ag^-1, the initial capacitances of Ni O, NiMoO4, Ni O@NiMoO4 and Ni O@NiMoO4@PPy are 456.0, 803.2, 764.4 and 941.6 Fg^-1, respectively. After 10,000 cycles, the corresponding capacitances are 346.8, 510.8, 641.2 and 904.8 Fg^-1, respectively. Especially, the initial capacitance of Ni O@NiMoO4@PPy is 850.2 Fg^-1, and remains 655.2 Fg^-1 with a high retention of 77.1% at30 Ag^-1 even after 30,000 cycles. The calculation result based on density function theory shows that the much stronger Mo-O bonds are crucial for stabilizing the Ni O@NiMoO4 composite, resulting in a good cycling stability of these materials. 展开更多
关键词 NIO NiO@NiMoO4@PPy Porous spherical structure Supercapacitor Cycling stability
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