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Self-doped n-type small molecular electron transport materials for high-performance organic solar cells 被引量:1
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作者 jinju liu nannan zheng +4 位作者 zhicheng hu zhenfeng wang xiye yang fei huang yong cao 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第8期1136-1144,共9页
Two naphthalene diimide (NDI) and perylene diimide (PDI) based n-type water/alcohol soluble small molecules (NFN and PFP) are designed and utilized as electron transport layers (ETLs) for organic solar cells ... Two naphthalene diimide (NDI) and perylene diimide (PDI) based n-type water/alcohol soluble small molecules (NFN and PFP) are designed and utilized as electron transport layers (ETLs) for organic solar cells (OSCs). NFN and PFP are synthesized by using Sonogashira coupling from alkynyl modified fluorene with mono-bromo substituted NDI and PDI. Density functional theory study results of NFN and PFP show that they possess excellent planarity due to the employment of triple bonds as connection units. Moreover, it was shown by electron paramagnetic resonance study that both NFN and PFP possess obvious self-doping behaviors, which may effectively enhance their charge transporting capability as ETLs in OSCs. Power conversion efficiencies of 8.59% and 9.80% can be achieved for OSCs with NFN and PFP as ETLs, respectively. The higher power conversion efficiency (PCE) of PFP based photovoltaic device is originated from the stronger doping property and higher mobility of PFR 展开更多
关键词 self-doped n-type small molecules organic solar cells electron transport layers
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什么导致了女性职业晋升障碍?一个基于多理论视角的整合模型 被引量:4
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作者 张瑞娟 刘金菊 尹鹏飞 《中国人力资源开发》 CSSCI 北大核心 2022年第11期90-109,共20页
性别差距过大影响社会稳定和发展。女性职位晋升差距作为性别差距的重要表现受到了学术界的持续关注。本研究从理论视角和研究层面两个角度,系统梳理了国内外相关研究,将影响女性职位晋升的因素归纳为性别偏见、工作-家庭以及人力资本/... 性别差距过大影响社会稳定和发展。女性职位晋升差距作为性别差距的重要表现受到了学术界的持续关注。本研究从理论视角和研究层面两个角度,系统梳理了国内外相关研究,将影响女性职位晋升的因素归纳为性别偏见、工作-家庭以及人力资本/社会资本三个理论视角,并从社会、组织和个体三个层面总结了不同理论视角下的影响因素,建立了影响女性职业晋升的因素和对策的多层次整合模型。在此基础上,提出了未来研究的几个方向。本文在理论上有助于研究者系统地了解影响女性职业晋升的因素以及这些因素在社会、组织和个体层面的具体表现;在实践方面有助于为社会和组织综合多方面因素制定联动政策,进而缩小职业晋升的性别差距。该研究也为女性自身克服社会、组织因素和自身的心理障碍的影响提供启发。 展开更多
关键词 女性职业晋升 障碍和措施 多理论视角和层次 整合模型
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Exotic origin of the Chinese continental shelf: new insights into the tectonic evolution of the western Pacific and eastern China since the Mesozoic 被引量:33
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作者 Yaoling Niu Yi liu +15 位作者 Qiqi Xue Fengli Shao Shuo Chen Meng Duan Pengyuan Guo Hongmei Gong Yan Hu Zhenxing Hu Juanjuan Kong Jiyong Li jinju liu Pu Sun Wenli Sun Lei Ye Yuanyuan Xiao Yu Zhang 《Science Bulletin》 SCIE EI CAS CSCD 2015年第18期1598-1616,共19页
The effect of paleo-Pacific subduction on the geological evolution of the western Pacific and continental China is likely complex. Nevertheless, our analysis of the distribution of Mesozoic granitoids in the eastern c... The effect of paleo-Pacific subduction on the geological evolution of the western Pacific and continental China is likely complex. Nevertheless, our analysis of the distribution of Mesozoic granitoids in the eastern continental China in space and time has led us to an interesting conclusion: The basement of the continental shelf beneath East and South China Seas may actually be of exotic origin geologically unrelated to the continental lithosphere of eastern China. By accepting the notion that the Jurassic- Cretaceous granitoids in the region are genetically associated with western Pacific subduction and the concept that subduction may cease to continue only if the trench is being jammed, then the termination of the granitoid magmatism throughout the vast region at -88±2 Ma manifests the likelihood of "sudden", or shortly beforehand (- 100 Ma), trench jam of the Mesozoic western Pacific subduction. Trench jam happens if the incoming "plate" or portion of the plate contains a sizeable mass that is too buoyant to subduct. The best candidate for such a buoyant and unsubductable mass is either an oceanic plateau or a micro-continent. We hypothesize that the basement of the Chinese continental shelf represents such an exotic, buoyant and unsubductable mass, rather than seaward extension of the continental lithosphere of eastern China. The locus of the jammed trench (i.e., the suture) is predictably located on the shelf in the vicinity of, and parallel to, the arc-curved coastal line of the southeast continental China. It is not straightforward to locate the locus in the northern section of the East China Sea shelf because of the more recent (〈20 Ma) tectonic re-organization associated with the opening of the Sea of Japan. We predict that the trench jam at - 100 Ma led to the re-orientation of the Pacific plate motion in the course of NNW direction as inferred from the age-progressive Emperor Seamount Chain of Hawaiian hotspot origin (its oldest unsubdued Meiji and Detroit seamounts are -82 Ma), making the boundary between the Pacific plate and the newly accreted plate of eastern Asia transform fault at the location east of the continental shelf of exotic origin. This explains the apparent-40 Myr magmatic gap from - 88 to - 50 Ma prior to present-day western Pacific subduction initiation. We propose that basement penetration drilling on well-chosen sites is needed to test the hypothesis in order to reveal the true nature of the Chinese continental shelf basement. This testing becomes critical and cannot longer be neglected in order to genuinely understand the tectonic evolution of the western Pacific and its effect on the geology of eastern China since the Mesozoic, including the cratonic lithosphere thinning, related magmatism/mineralization, and the mechanism of the subsequent South China Sea opening, while also offering novel perspectives on aspects of the plate tectonics theory. We also suggest the importance of future plate tectonic reconstruction of the western Pacific to consider the nature and histories of the Chinese continental shelf of exotic origin as well as the probable transform plate boundary from - 100 to -50 Ma. Effort is needed to reveal the true nature and origin of the - 88 ± 2 Ma granitic gneisses in Taiwan and the 110-88 Ma granitoids on the Hainan Island. 展开更多
关键词 Mesozoic granitoids in eastern ChinaExotic origin of Chinese continental shelf Trenchjam Transform plate boundary Basal hydrationweakening Lithosphere thinning Cratondestruction Mantle hydrous melting Crustalmelting Plate tectonics South China Sea
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