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5篇 您的检索式:作者名="Corey Carlos"
    题名 作者 年代 出处 被引量
1Type of CFTR Mutation Determines Risk of Pancreatitis in Patients With Cystic Fibrosis显示文摘Chee Y. Ooi Ruslan Dorfman Marco Cipolli Tanja Gonska Carlo Castellani Katherine Keenan Steven D. Freedman Julian Zielenski Yves Berthiaume Mary Corey Susanne Schibli Elizabeth Tullis Peter R. Durie 2011Gastroenterology2011,,1:1
2Type of CFTR Mutation Determines Risk of Pancreatitis in Patients With Cystic Fibrosis显示文摘Chee Y. Ooi Ruslan Dorfman Marco Cipolli Tanja Gonska Carlo Castellani Katherine Keenan Steven D. Freedman Julian Zielenski Yves Berthiaume Mary Corey Susanne Schibli Elizabeth Tullis Peter R. Durie 2011Gastroenterology2011,,1:1
3DNA Translocation and Loop Formation Mechanism of Chromatin Remodeling by SWI/SNF and RSC显示文摘Yongli Zhang Corey L. Smith Anjanabha Saha Stephan W. Grill Shirley Mihardja Steven B. Smith Bradley R. Cairns Craig L. Peterson Carlos Bustamante 2006Molecular Cell2006,,:1
4Nanoparticle-Decorated Ultrathin La2O3 Nanosheets as an Effcient Electrocatalysis for Oxygen Evolution Reactions显示文摘Electrochemical catalysts for oxygen evolution reaction are a critical component for many renewable energy applications. To improve their catalytic kinetics and mass activity are essential for sustainable industrial applications. Here, we report a rare-earth metal-based oxide electrocatalyst comprised of ultrathin amorphous La2O3 nanosheets hybridized with uniform La2O3 nanoparticles(La2O3@NP-NS). Significantly improved OER performance is observed from the nanosheets with a nanometer-scale thickness. The as-synthesized 2.27-nm La2O3@NP-NS exhibits excellent catalytic kinetics with an overpotential of 310 mV at 10 m A cm^-2, a small Tafel slope of 43.1 mV dec^-1, and electrochemical impedance of 38 Ω. More importantly, due to the ultrasmall thickness, its mass activity, and turnover frequency reach as high as 6666.7 A g^-1 and 5.79 s^-1, respectively, at an overpotential of 310 mV. Such a high mass activity is more than three orders of magnitude higher than benchmark OER electrocatalysts, such as IrO2 and RuO2. This work presents a sustainable approach toward the development of highly e cient electrocatalysts with largely reduced mass loading of precious elements.Guangyuan Yan Yizhan Wang Ziyi Zhang Yutao Dong Jingyu Wang Corey Carlos Pu Zhang Zhiqiang Cao Yanchao Mao Xudong Wang 2020Nano-Micro Letters2020,12,4:1
5Thickness-Dependent Piezoelectric Property from Quasi-Two-Dimensional Zinc Oxide Nanosheets with Unit Cell Resolution显示文摘A quantitative understanding of the nanoscale piezoelectric property will unlock many application potentials of the electromechanical coupling phenomenon under quantum confinement.In this work,we present an atomic force microscopy-(AFM-)based approach to the quantification of the nanometer-scale piezoelectric property from single-crystalline zinc oxide nanosheets(NSs)with thicknesses ranging from 1 to 4 nm.By identifying the appropriate driving potential,we minimized the influences from electrostatic interactions and tip-sample coupling,and extrapolated the thickness-dependent piezoelectric coefficient(d_(33)).By averaging the measured d_(33) from NSs with the same number of unit cells in thickness,an intriguing tri-unit-cell relationship was observed.From NSs with 3n unit cell thickness(n=1,2,3),a bulk-like d_(33) at a value of~9 pm/V was obtained,whereas NSs with other thickness showed a~30%higher d_(33) of~12 pm/V.Quantification of d_(33) as a function of ZnO unit cell numbers offers a new experimental discovery toward nanoscale piezoelectricity from nonlayered materials that are piezoelectric in bulk.Corey Carlos Yizhan Wang Jingyu Wang Jun Li Xudong Wang 2021Research2021,,1:0
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