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20篇 您的检索式:作者名="Karuturi"
    题名 作者 年代 出处 被引量
1Design and operando/in situ characterization of precious-metal-free electrocatalysts for alkaline water splitting显示文摘Electrochemical water splitting has attracted considerable attention for the production of hydrogen fuel by using renewable energy resources.However,the sluggish reaction kinetics make it essential to explore precious-metal-free electrocatalysts with superior activity and long-term stability.Tremendous efforts have been made in exploring electrocatalysts to reduce the energy barriers and improve catalytic efficiency.This review summarizes different categories of precious-metal-free electrocatalysts developed in the past 5 years for alkaline water splitting.The design strategies for optimizing the electronic and geometric structures of electrocatalysts with enhanced catalytic performance are discussed,including composition modulation,defect engineering,and structural engineering.Particularly,the advancement of operando/in situ characterization techniques toward the understanding of structural evolution,reaction intermediates,and active sites during the water splitting process are summarized.Finally,current challenges and future perspectives toward achieving efficient catalyst systems for industrial applications are proposed.This review will provide insights and strategies to the design of precious-metalfree electrocatalysts and inspire future research in alkaline water splitting.Tingwen Zhao Yuan Wang Siva Karuturi Kylie Catchpole Qiang Zhang Chuan Zhao 2020Carbon Energy2020,2,4:3
2Discovery of novel sulfonated small molecules that inhibit vascular tube formation显示文摘Karthik Raman Rajesh Karuturi Vimal P. Swarup Umesh R. Desai Balagurunathan Kuberan 2012Bioorganic & Medicinal Chemistry Letters2012,,13:2
3Improvement of Stress Corrosion Resistance in Aluminum Alloy 7075 through Retrogression and Re-Aging Modification显示文摘Siva Krishna Karuturi Li Jun Liu Liap Tat Su Wen Bin Niu Alfred Ling Yoong Tok 20132013 (789)2013,,789:1
4Frequency of mesenchymal - epithelial transition factor gene (MET) and the catalytic subunit of phosphoinositide - 3 - kinase (PIK3CA) copy number elevation and correlation with outcome in patients with early stage breast cancer显示文摘GONZALEZ ANGULO A M CHEN H KARUTURI M S 2013Cancer2013,119,1:1
5PDK1 Signaling Toward PLK1–MYC Activation Confers Oncogenic Transformation, Tumor-Initiating Cell Activation, and Resistance to mTOR-Targeted Therapy显示文摘Jing Tan Zhimei Li Puay Leng Lee Peiyong Guan Mei Yee Aau Shuet Theng Lee Min Feng Cheryl Zihui Lim Eric Yong Jing Lee Zhen Ning Wee Yaw Chyn Lim R.K. Murthy Karuturi Qiang Yu 2013Cancer Discovery2013,,10:1
6Frequency of mesenchymal - epithelial transition factor gene (MET) and the catalytic subunit of phosphoinositide - 3 - kinase (PIK3CA) copy number elevation and correlation with outcome in patients with early stage breast cancer 显示文摘GONZALEZ ANGULO A M CHEN H KARUTURI M S 2013Cancer2013,119,1:1
7C DKN 1C (p57) is a direct target of EZH2 and suppressed by multiple epigenetic mechanisms in breast can- cer cells显示文摘Yang X Karuturi RK Sun F 2009PLoS One2009,4,4:1
8Microarrays and clinical investigations 显示文摘Liu ET Karuturi KR 2004N Engl J Med2004,350,16:1
9CDKN1C (p57) is a direct target of EZH2 and suppressed by multiple epigenetic mechanisms in breast cancer cells显示文摘Yang X Karuturi RK Sun F 2009PLoS One2009,4,4:1
10CDKN1C (p57) is a direct target of EZH2 and suppressed by multiple epigeneti~: mechanisms in breast cancer cells 显示文摘Yang X Karuturi RK Sun F 2009PLoS One2009,4,4:1
11CDKN1C (p57) is a direct target of EZH2 and suppressed by multiple epigenetic mechanisms in breast cancer cells显示文摘YANG X KARUTURI R K SUN F 0,,04:1
12A novel photoanode with three-dimensionally, hierarchical- ly ordered nanobushes for highly efficient photoelectro- chemical cells 显示文摘KARUTURI S K LUO J S CHENG C W 2012Adv Mater2012,24,:1
13Frequencyof mesenchymal-epithelial transition factor gene (MET) and thecatalytic subunit of phosphoinositide-3-kinase (PIK3CA) copynumber elevation and correlation with outcome in patients withearly stage breast cancer 显示文摘Gonzalez-Angulo AM Chen H Karuturi MS 2013Cancer2013,19,1:1
14CDKN1C (p57) is a direct target of EZH2 and suppressed by multiple epigenetic mechanisms in breast cancer cells显示文摘Yang X Karuturi R K M Sun F 0,,04:1
15CDKN1C ( p57 ) is a direct target of EZH2 and suppressed by multiple epigenetlc mechanisms in breast cancer cells 显示文摘Yang X Karuturi RK Sun F 2009PLoS One2009,4,4:1
16Electrochromic Photonic Crystal Displays with Versatile Color Tunability 显示文摘Liu L Karuturi S K Su L T 2011Electrochemistry Communication2011,13,11:1
17Discovery of novel sulfon-ated small molecules that inhibit vascular tube formation显示文摘Raman K Karuturi R Swarup VP 2012Bioorganic & Medicinal Chemistry Letters2012,22,:1
18CDKN1C ( p57KIP2 ) is a direct target of EZH2 and suppressed by muhiple epi- genetic mechanisms in breast cancer cells 显示文摘-/ - Yang X Karuturi RK Sun F 2009PLoS 0NE2009,4,4:1
19Microarrays and clinical investigations显示文摘LIU E T KARUTURI K R 2004N Engl J Med2004,350,16:1
20NIR-plasmon-enhanced Systems for Energy Conversion and Environmental Remediation显示文摘The introduction of plasmons is an important method to solve the insufficient utilization of the full spectrum of solar energy by semiconductor catalysts.However,semiconductor catalysts combined with traditional noble metal plasmons(Au,Ag)can only extend the absorption spectrum to partially visible light.In order to further improve the photoenergy absorption efficiency of catalysts,they need to be able to effectively utilize near-infrared light,which has become a new research direction.Recent studies have shown that traditional noble metal plasmons can absorb a part of NIR through special morphology,size control and material composite.At the same time,gratifying achievements have been made in the application of plasmonic semiconductors with broad spectrum absorption in catalysis.This article reviews the principles of generating and regulating plasmonic effects in different catalytic systems.The applications of plasmon absorption of near-infrared light in energy conversion and environmental remediation have also been presented.WANG Wenke Sandra Elizabeth SAJI Siva KARUTURI ZHENG Hong MENG Guodong CHENG Yonghong YIN Zongyou 2020Chemical Research in Chinese Universities2020,36,6:0
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