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6篇 您的检索式:作者名="Jianglong Song"
    题名 作者 年代 出处 被引量
1A Module Analysis Approach to Investigate Molecular Mechanism of TCM Formula:A Trial on Shu-feng-jie-du Formula显示文摘Jianglong Song Fangbo Zhang Shihuan Tang 2013Evid Based Complement Alternat Med2013,66,20:1
2Experimental study on drying and moisture re-adsorption kinetics of an Indonesian low rank coal 显示文摘Li Xianchun Song Hui Wang Qi Meesri C Wall T Yu Jianglong 2009Journal of Environmental Sciences2009,21,:1
3A Module analysis approach to investigate molecular mechanism of TCM formula:a trial on shu-feng-jie-du formula显示文摘Jianglong Song Fangbo Zhang Shihuan Tang 2013EvidenceBased Complementary and Alternative Medicine2013,81,73:1
4A Module Analysis Approach to Investigate Molecular Mechanism of TCM Formula:A Trial on Shu-feng-jie-du Formula显示文摘Jianglong Song Fangbo Zhang Shihuan Tang 2013Evid Based Complement Alternat Med2013,,73:1
5Review of Black Start on New Power System Based on Energy Storage Technology显示文摘With the continuous development of new energy generation technology and the increasingly complex power grid environment,the traditional black start scheme cannot meet the requirements of today’s power grid in order to ensure the stable operation of the power system can be restored quickly in the face of large power outages,so a more complete black start scheme needs to be developed to cope with the new power system.With the development of energy storage technology,the limitations of the traditional black-start scheme can be solved by new energy farms with energy storage configuration.Therefore,this paper investigates the problems faced by black-start,the key technologies of energy storage assisted new energy black-start,and introduces the research related to new energy black-start technology to provide reference for future research and application of new energy black-start.Jin Fan Litao Niu Cuiping Li Gang Zhang He Li Yiming Wang Junhui Li Qinglong Song Jiacheng Sun Jianglong Pan Fangfang Lai 2023Energy Engineering2023,120,12:0
6Incorporating element doping and quantum dot embedding effects to enhance the thermoelectric properties of higher manganese silicides显示文摘Element doping and nano-inclusion embedding are effective approaches to enhance the electrical conductivities and decrease the lattice thermal conductivities of thermoelectric(TE)materials,respectively.However,the intrinsic low electrical thermal conductivities and high electrical properties are severely sacrificed,and the final figure of merit(ZT)is usually restricted.In this study,Ag doping and Pt quantum dot(QD)embedding were synchronously achieved via embedding Ag/Pt alloy QDs into the higher manganese silicides to avoid the conventional single-element doping strategy.The power factor(at 823 K)was enhanced from 1.57×10^(-3) W m^(-1) K^(-2) to 1.82×10^(-3) W m^(-1) K^(-2)(-16%)due to the-18%increase in carrier concentration that was derived from the Ag doping effect.Simultaneously,the lattice thermal conductivity(at 823 K)decreased from 2.65 W m^(-1) K^(-1) e1.92 W m^(-1) K^(-1)(-28%)because of the broadband phonon scattering effect that resulted from the residual Pt QDs inclusions.Synthetically,the optimal ZT value increased by-52%from 0.42 to 0.64 at 823 K.This study demonstrated that incorporating metastable alloy QDs to obtain element doping and nano-inclusion embedding effects is a novel and feasible means to enhance the ZT value of HMS.This method is also possibly applicable to other alloy QD/TE composites.Qing Wang Shiyu Song Xiaofeng Yang Ziyang Liu Yufei Ma Xingyuan San Jianglong Wang Dan Zhang Shu-Fang Wang Zhiliang Li 2021Journal of Materiomics2021,7,2:0
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