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复合敏化乳化炸药爆速研究 被引量:1
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作者 宋锦泉 汪旭光 +1 位作者 崔安娜 刘涛 《中国矿业》 北大核心 2000年第6期3-7,共5页
通过对大量测试数据的整理和分析讨论 ,得出玻璃微球与气泡复合敏化的乳化炸药爆速与炸药密度、敏化剂含量等因素的关系。由显著性分析可知 。
关键词 爆速测试 复合敏化剂 乳化炸药 显著性分析 爆轰参数
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Strategies for engineering metal-organic frameworks as efficient photocatalysts 被引量:12
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作者 沈丽娟 梁若雯 吴棱 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2015年第12期2071-2088,共18页
Environmental pollution and energy deficiency represent major problems for the sustainability of the modern world. Photocatalysis has recently emerged as an effective and environmentally friendly technique to address ... Environmental pollution and energy deficiency represent major problems for the sustainability of the modern world. Photocatalysis has recently emerged as an effective and environmentally friendly technique to address some of these sustainability issues,although the key to the success of this approach is dependent on the photocatalysts themselves. Based on their attractive physic chemical properties,including their ultrahigh surface areas,homogeneous active sites and tunable functionality,metal-organic frameworks(MOFs) have become interesting platforms for the development of solar energy conversion devices. Furthermore,MOFs have recently been used in a wide variety of applications,including heterogeneous photocatalysis for pollutant degradation,organic transformations,hydrogen production and CO2 reduction. In this review,we have highlighted recent progress towards the application of MOFs in all of these areas. We have collected numerous reported examples of the use of MOFs in these areas,as well as providing some analysis of the key factors influencing the efficiency of these systems. Moreover,we have provided a detailed discussion of new strategies that have been developed for enhancing the photocatalytic activity of MOFs. Finally,we have provided an outlook for this area in terms of the future challenges and potential prospects for MOFs in photocatalysis. 展开更多
关键词 Metal-organic frameworks PHOTOCATALYSIS LIGAND FUNCTIONALIZATION PHOTOSENSITIZATION CO-CATALYST Composite
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