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高等学校化学研究(英文版)
高等学校化学研究(英文版)

唐敖庆

双月刊

1005-9040

cjcu@mail.jlu.edu.cn

0431-88499216

130021

长春市解放大路117号吉林大学北区图书馆414室

高等学校化学研究(英文版)/Journal Chemical Research in Chinese UniversitiesCSCDCSTPCD北大核心SCI
查看更多>>本刊是中华人民共和国教育部委托吉林大学、南开大学主办的化学学科综合性学术刊物,以研究论文、研究快报、研究简报和综合评述等栏目集中报道我国高校和中科院研究所在化学学科及其交叉学科、新兴学科、边缘学科等领域所开展的基础研究,应用研究和重大开发研究所取得的最新成果。
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    [H2dab][GaB5O10]:an Acentric Galloborate with a 4-Connected Uninodal Framework

    LIU WenfangCHEN ChonganYANG Guoyu
    747-752页
    查看更多>>摘要:A new acentric galloborate(GBO)[H2dab][GaB5O10](1,1,4-dab:1,4-diaminobutane)has been synthesized under solvothermal conditions.The alternation of 4,4-connected GaO4 and B5O10 cluster build up the 3D[GaB5O10]n2n-uninodal framework,which contains three pairs of helical channels with 8-member ring(MR)and 7-MR apertures,respectively.Compound 1 exhibits a moderate second harmonic generation(SHG)response of 1.8 times that of KH2PO4(KDP),indicating its potential application in UV regions.The acentric uninodal framework in compound 1 represents a new type of zeolitic framework in the GBOs'family.

    Exploring the Predominant Factors Influencing the Oxygen Reduction Performance of PtCo/C Catalysts

    LI JinrongYU XianghuiSUN QiPENG Yong...
    753-760页
    查看更多>>摘要:PtCo nanoalloys(NAs)deposited on carbon black are emerging as robust electrocatalysts for addressing the sluggish kinetic issue of oxygen reduction reaction(ORR).However,developing a simple and low-cost method to synthesize PtCo/C with excellent performance is still a great challenge.In this work,a one-pot method was used to successfully obtain the PtCo NAs on commercial carbon supports of acetylene black and Ketjenblack ECP600JD,respectively.Compared with those grown on Ketjenblack ECP600JD,the PtCo NAs grown on acetylene black exhibited higher electrochemical surface area(ECSA)and mass activity(MA),which may be attributed to the different particle sizes of PtCo NAs,distinct hydrophilicity,electroconductivity and charge distribution between the carbon supports and PtCo NAs.Our study provides valuable insights into the optimal design of carbon-supported ORR electrocatalysts with exceptional activity and durability.

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