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10篇 您的检索式:作者名="Ben Adler"
    题名 作者 年代 出处 被引量
1Evaluation of image quality and radiation dose of thoracic and coronary dual-source CT in 110 infants with congenital heart disease显示文摘Moez Ben Saad Adela Rohnean Anne Sigal-Cinqualbre Ghazal Adler Jean-Francois Paul 2009Pediatric Radiology2009,,7:1
2Regula- ting Consumer Bankruptcy: A Theoretical Inquiry 显示文摘Adler Barry & Polak Ben & Schwartz Alan 2000Journal of Legal Studies2000,29,2:1
3Relation between evolutionary ST segment and T- wave direction and detrocardiographic prediction of myocardial infarct size and le/t ventricular function among patients with anterior wall Q - wave acute myocardial infarction who received reperfusion therapy 显示文摘Adler Y Zafrir N Ben - Gal T 2000Am J Cardiol2000,85,8:1
4Life-Threatening Events During Endurance Sports显示文摘Lior Yankelson Ben Sadeh Liron Gershovitz Julieta Werthein Karin Heller Pinchas Halpern Amir Halkin Arnon Adler Arie Steinvil Sami Viskin 2014Journal of the American College of Cardiology2014,,5:1
5Leptospira and leptospirosis 显示文摘Ben Adler Alejandro 2010Veterinary Microbiology Volume2010,,140:1
6Exercise training in advanced heart failure patients: Discordance between improved exercise tolerance and unchanged NT-proBNP levels显示文摘Michael Arad Yehuda Adler Nira Koren-Morag Shy Natanzon Ben-Ami Sela Issahar Ben Dov Michael Shechter Ehud Schwammenthal Dov Freimark 2007International Journal of Cardiology2007,,1:1
7Regulating Consumer Bankruptcy: A theoretical Inquiry显示文摘Adler Barry Ben Polak and Alan Schwartz 2000Journal of Legal Studies2000,,:1
8LipL21 is a novel surface-exposed lipoprotein of pathogenic leptospira species显示文摘Paul A Cullen David A Haake Ben Adler 2003Infect and Immun2003,75,2:1
9A national interven- tion to prevent the spread of carbapenem - resistant Enterebacteriace2e in Israeli post- acute care hospitals 显示文摘Ben - David D Masarwa S Adler A 2014Infect Control Hasp Epidemiol2014,35,7:1
10Peptide self‐assembly as a strategy for facile immobilization of redox enzymes on carbon electrodes显示文摘Redox-enzyme‐mediated electrochemical processes such as hydrogen production,nitrogen fixation,and CO_(2) reduction are at the forefront of the green chemistry revolution.To scale up,the inefficient two‐dimensional(2D)immobilization of redox enzymes on working electrodes must be replaced by an efficient dense 3D system.Fabrication of 3D electrodes was demonstrated by embedding enzymes in polymer matrices.However,several requirements,such as simple immobilization,prolonged stability,and resistance to enzyme leakage,still need to be addressed.The study presented here aims to overcome these gaps by immobilizing enzymes in a supramolecular hydrogel formed by the self‐assembly of the peptide hydrogelator fluorenylmethyloxycarbonyldiphenylalanine.Harnessing the self‐assembly process avoids the need for tedious and potentially harmful chemistry,allowing the rapid loading of enzymes on a 3D electrode under mild conditions.Using the[FeFe]hydrogenase enzyme,high enzyme loads,prolonged resistance against electrophoresis,and highly efficient hydrogen production are demonstrated.Further,this enzyme retention is shown to arise from its interaction with the peptide nanofibrils.Finally,this method is successfully used to retain other redox enzymes,paving the way for a variety of enzyme‐mediated electrochemical applications.Itzhak Grinberg Oren Ben‐Zvi Lihi Adler‐Abramovich Iftach Yacoby 2023Carbon Energy2023,5,11:0
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