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7篇 您的检索式:作者名="Senpei"
    题名 作者 年代 出处 被引量
1The interaction of DNA with phytoferritin during iron oxidation显示文摘Rui Yang Senpei Yang Xiayun Liao Jianjun Deng Guanghua Zhao 2014Food Chemistry2014,,:1
2The interaction of phenolic acids with Fe(III) in the presence of citrate as studied by isothermal titration calorimetry显示文摘Senpei Yang Guangling Bai Lingli Chen Qun Shen Xianmin Diao Guanghua Zhao 2014Food Chemistry2014,,:1
3NADH induces iron release from pea seed ferritin: A model for interaction between coenzyme and protein components in foodstuffs显示文摘Chenyan Lv Yufei Bai Senpei Yang Guanghua Zhao Bin Chen 2013Food Chemistry2013,,4:1
4Isolation and characterization of a new phytoferritin from broad bean ( Vicia faba ) seed with higher stability compared to pea seed ferritin显示文摘Shaojun Yun Senpei Yang Luyao Huang Xin Qi Peng Mu Guanghua Zhao 2012Food Research International2012,,1:1
5NADH induces iron release from pea seed ferritin: A model for interaction between coenzyme and protein components in foodstuffs显示文摘Chenyan Lv Yufei Bai Senpei Yang Guanghua Zhao Bin Chen 2013Food Chemistry2013,,4:1
6Bimetal MOF-derived NiFe-P nanocomposites coupled with Cu_(3)P nanoparticles to construct tandem electron transfer channels for photocatalytic hydrogen evolution显示文摘Finely modulated light-induced charge separation and transfer is a central challenge to achieve efficient photocatalysis.Although progress has been made in this field,most of the previous research works focused on the separation or migration of photogenerated carriers but did not build a bridge between the two.How to realize the strong driving and precise migration of carriers has become the focus of our work.We report an ingeniously designed ternary heterojunction.Taking NiFe-MOF as the“parent material”,the FeP_(4)/Ni_(x)P_(y)heterojunction is derived in situ while maintaining the frame structure through gas-solid reaction,and finally the Z-type electron transfer is realized.With Cu_(3)P anchoring spindle matrix,an electron transport tunnel is opened up in Cu_(3)P/FeP_(4)/Ni_(x)P_(y)ternary heterojunction under the action of p-n heterojunction built-in electric field driving and accurate energy band matching.The strong driving force of the built-in electric field provides an inexhaustible power for the transmission of electrons,and the fine series of electron transmission channels realizes the precise transmission of electrons.The above fine design makes the perfect fit between the built-in electric field and the electron transfer channel,which not only effectively improves the embarrassing situation of insufficient electron driving force of hydrogen evolution reaction in the previous research,but also makes up for the weakening of semi-conductor reduction ability caused by the construction of traditional p-n heterostructures.This research work provides a new idea for the construction of multiple heterostructures and the design of fine interface engineering in the future.Haiyan Zhang Shitao Yang Peng Zhu Senpei Tang Ming Li 2024Journal of Environmental Sciences2024,,3:0
7Investigation of a semi-empirical load model of natural gas explosion in vented spaces显示文摘Due to the influence of many factors,the overpressure-time history load model of vented gas explosions is difficult to describe and is not conducive to further structural design.Based on vented gas explosion test data,this paper obtains three typical overpressure-time history curves and puts forward a new semi-empirical model-double hump model that considers gas concentration and venting pressure,and gives a formula for peak pressure and overpressure-time history model.The scientificity of the model is then verified by the total impulse in the load.The model is able directly reflect the load characteristics,provide reference for calculating key parameters of a vented gas explosion and provide information on the structural response under the load.The model thereby has the potential to help reduce the impact of gas explosion disasters.Shigang Yang Jiongwei Cai Ya Yang Qin Fang Qi Bao Senpei Wang 2021Journal of Safety Science and Resilience2021,2,3:0
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