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11篇 您的检索式:作者名="Butina"
    题名 作者 年代 出处 被引量
1Genetic diversity of cyanophages of the myoviridae family as a constituent of the associated community of the Baikal sponge Lubomirskia baicalensis显示文摘BUTINA T V POTAPOV S A BELYKH O I 2015Russian Journal of Genetics2015,51,3:1
2Novel 2-D graphical representation of proteins 显示文摘Randic M Butina D Zupan J 2006Chemical Physics Letters2006,419,26:1
3Novel 2-D graphical representation of proteins显示文摘Randic M Butina D Zupan J 2006Chem Phys Lett2006,419,26:1
4Phylogenetic diversity of T4-1ike bacteriophages in Lake Baikal显示文摘BUTINA T V BELYKH O I MAKSIMENKO S Y 2010FEMS Microbiology Letter2010,309,2:1
5Tick-borne encephalitis virus genotyping显示文摘Bebkov SI Butina TV Demina TV 2002Bull East Siberian Sci Centre (In Russian with English abstract)2002,2,:1
6Unsupervised data base clustering based on daylight’s fingerprint and Tanimoto similarity:A fast and automated way to cluster small and large data sets显示文摘Butina D 1999Journal of Chemical Information and Computer Sciences1999,39,4:1
7A rapid and facile method for the dereplication of purified natural products显示文摘BRADSHAW J BUTINA D DUNN A J 2001J Nat Prod2001,64,12:1
8Canine distemper virus diversity in Lake Baikal seal(Phoca sibirica) population显示文摘Butina T V Natalja N D Sergey I B 2010Vet Microbiol2010,,175:1
9Analysis of the haemagglutinin gene of current wild-type canine distemper virus isolates from Germany显示文摘L Haas W Martens I Greiser-Wilke L Mamaev T Butina D Maack T Barrett 1997Virus Research1997,,2:1
10Predicting ADME properties in silico:methods and models显示文摘Butina D Segall M D Frankcombe K 2002Drug Discov Today2002,7,11:1
11CO_2 activation on bimetallic CuNi nanoparticles显示文摘Density functional theory calculations have been performed to investigate the structural, electronic, and CO2 adsorption properties of 55-atom bimetallic Cu Ni nanoparticles(NPs) in core-shell and decorated architectures,as well as of their monometallic counterparts. Our results revealed that with respect to the monometallic Cu55 and Ni55parents, the formation of decorated Cu12Ni43 and core-shell Cu42Ni13 are energetically favorable. We found that CO2 chemisorbs on monometallic Ni55, core-shell Cu13Ni42, and decorated Cu12Ni43 and Cu43Ni12,whereas, it physisorbs on monometallic Cu55 and core-shell Cu42Ni13. The presence of surface Ni on the NPs is key in strongly adsorbing and activating the CO2 molecule(linear to bent transition and elongation of C=O bonds). This activation occurs through a charge transfer from the NPs to the CO2 molecule, where the local metal d-orbital density localization on surface Ni plays a pivotal role. This work identifies insightful structureproperty relationships for CO2 activation and highlights the importance of keeping a balance between NP stability and CO2 adsorption behavior in designing catalytic bimetallic NPs that activate CO2.Natalie Austin Brandon Butina Giannis Mpourmpakis 2016Progress in Natural Science:Materials International2016,26,5:0
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