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11篇 您的检索式:作者名="Pirnat"
    题名 作者 年代 出处 被引量
149A/G and CT60 polymorphisms of the cytotoxic T-lymphocyte-associated antigen 4 gene associated with autoimmune thyroid disease显示文摘Ajda Bicek Katja Zaletel Simona Gaberscek Edvard Pirnat Blaz Krhin Tanja Gmeiner Stopar Sergej Hojker 2009Human Immunology2009,,10:1
2Mycotoxins in cereals and cereal products in Slovenia-Official control of foods in the years 2008-2012显示文摘Kirin?i ? S ?krjanc B Kos N Kozolc B Pirnat N Tav ?ar-Kalcher G 2015Food Control2015,50,:1
3Versatility of an 810 nm diode laser in dentistry:An overview显示文摘Pirnat S 2007Journal of Laser and Health Academy2007,,4:1
4The utility of background knowledge in learning medical diagnostic rules显示文摘Lavra(c)N D(z)eroski S Pirnat V 1993Appl Artif Intell1993,7,:1
5Conser-ation and management of forest patches and corridors in suburban landscape显示文摘PIRNAT J 2000Landscape and Urban Planning2000,52,:1
6Effect of pH on the rheology of marine clay from the site of the south nation river, Canada, Landslide of 1971 显示文摘Keneth Torrance J Maria Pirnat 1984Clays and Clay Minerals1984,32,5:1
7Conservation and management of forest patches and corridors in suburban landscapes 显示文摘Pirnat J 2000Lands Urban Plan2000,52,:1
8Versatility of an 810 nm Diode Laser in Dentistry: An Overview显示文摘Samo Pirnat 2007Joumal of Laser and Health Academy2007,,4:1
9The outcome of 131I treatment in Graves' patients pretreated or not with methimazole 显示文摘Pirnat E Zaletel K Gaber ek S 2011Hell J Nucl Meal2011,14,1:1
10Conservation and management of forest patches and corridors in suburban landscapes 显示文摘Pirnat J 2000Landscape and Urban Planning2000,52,23:1
11Electrochemical Mechanism of Al Metal–Organic Battery Based on Phenanthrenequinone显示文摘Al metal-organic batteries are a perspective high-energy battery technology based on abundant materials.However,the practical energy density of Al metal-organic batteries is strongly dependent on its electrochemical mechanism.Energy density is mostly governed by the nature of the aluminium complex ion and utilization of redox activity of the organic group.Although organic cathodes have been used before,detailed study of the electrochemical mechanism is typically not the primary focus.In the present work,electrochemical mechanism of Al metal-phenanthrenequinone battery is investigated with a range of different analytical techniques.Firstly,its capacity retention is optimized through the preparation of insoluble cross-coupled polymer,which exemplifies extremely low capacity fade and long-term cycling stability.Ex situ and operando ATR-IR confirm that reduction of phenanthrenequinone group proceeds through the two-electron reduction of carbonyl groups,which was previously believed to exchange only one-electron,severely limiting cathode capacity.Nature of aluminium complex ion interacting with organic cathode is determined through multiprong approach using SEM-EDS,XPS,and solid-state NMR,which all point to the dominant contribution of AlCl2+cation.Upon full capacity utilization,Al metal-polyphenanthrenequinone battery utilizing AlCl2+offers an energy density of more than 200Wh/kg making it a viable solution for stationary electrical energy storage.Jan Bitenc Urban Košir Alen Vizintin Niklas Lindahl AndražKrajnc Klemen Pirnat Ivan Jerman Robert Dominko 2021Energy Material Advances2021,,1:0
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