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2篇 您的检索式:作者名="Lixiao Shen"
    题名 作者 年代 出处 被引量
1Design and efficient synthesis of novel haptens and complete antigens for the AOZ,a toxic metabolite of furazolidone显示文摘好策略为设计有效幸运向前被带十并且为 3-amino-2-oxazolidinone (AOZ ) 的完全的抗原。最新设计的 Haptens 被使用 LiCl N (et ) 在好产量轻易地完成 3 同样新的催化作用系统,其结构被光谱学分析阐明,。为 AOZ 的新奇抗原被方便活跃酉旨方法成功地准备。3 和 4 作为 41:1 (5a ) 分别地被证明到搬运人蛋白质的幸运十的比率, 39:1 (6a ) , 11:1 (5b ) 和由 trinitrobenzene 的 9:1 (6b ) 酸性硫酸基的酸(TNBS ) 方法。抗血清的间接竞争 ELISA (ic-ELISA ) 的结果显示十与一个短不饱和的方面锁住的幸运能有效地唤起特定的有免疫力的反应。Yu Dong Shen Yu Wang Shi Wei Zhang Zhi LiXiao Yuan Ming Sun Xian Zhang Bu Lian Quan Gu 2007Chinese Chemical Letters2007,18,12:5
2Recent advances in high-loading catalysts for low-temperature fuel cells: From nanoparticle to single atom显示文摘Low-temperature fuel cells(LTFCs)are considered to be one of the most promising power sources for widespread application in sustainable and renew-able energy conversion technologies.Although remarkable advances have been made in the mass activity of catalysts,mass transport impedance needs to be urgently addressed at a well-designed membrane electrode assembly(MEA)scale.Increasing the loading of electrocatalysts is conducive to prepare thinner and more efficient MEAs owing to the resulting enhanced reactant permeability,better proton diffusion,and lower electrical resistance.Herein,recent progress in high-loading(≥40 wt.%)Pt nanoparticle catalysts(NPCs)and high-loading(≥2 wt.%)single-atom catalysts(SACs)for LTFC applications are reviewed.A summary of various synthetic approaches and support materials for high-loading Pt NPCs and SACs is systematically presented.The influences of high surface area and appropriate surface functionalization for Pt NPCs,as well as coordina-tion environment,spatial confinement effect,and strong metal-support interac-tions(SMSI)for SACs are highlighted.Additionally,this review presents some ideas regarding challenges and future opportunities of high-loading catalysts in the application of LTFCs.Lixiao Shen Miao Ma Fengdi Tu Zigang Zhao Yunfei Xia Kokswee Goh Lei Zhao Zhenbo Wang Guangjie Shao 2021SusMat2021,1,4:3
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