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PUBMED FOR HANDHELDS

Journal Abstract Search


215 related items for PubMed ID: 25146912

  • 21. A Phosphate-Based Silver-Bipyridine 1D Coordination Polymer with Crystallized Phosphoric Acid as Superprotonic Conductor.
    Pal A, Pal SC, Otsubo K, Lim DW, Chand S, Kitagawa H, Das MC.
    Chemistry; 2020 Apr 06; 26(20):4607-4612. PubMed ID: 31917500
    [Abstract] [Full Text] [Related]

  • 22. High proton conduction at above 100 °C mediated by hydrogen bonding in a lanthanide metal-organic framework.
    Tang Q, Liu Y, Liu S, He D, Miao J, Wang X, Yang G, Shi Z, Zheng Z.
    J Am Chem Soc; 2014 Sep 03; 136(35):12444-9. PubMed ID: 25137095
    [Abstract] [Full Text] [Related]

  • 23. Mechanochemical Synthesis of Phosphonate-Based Proton Conducting Metal-Organic Frameworks.
    Rautenberg M, Bhattacharya B, Das C, Emmerling F.
    Inorg Chem; 2022 Jul 18; 61(28):10801-10809. PubMed ID: 35776665
    [Abstract] [Full Text] [Related]

  • 24. Synthesis and conductive performance of indium-substituted ternary heteropoly acids with Keggin structures.
    Wu X, Huang T, Wu Q, Xu L.
    Dalton Trans; 2016 Jan 07; 45(1):271-5. PubMed ID: 26597714
    [Abstract] [Full Text] [Related]

  • 25. Insight into the High Proton Conductivity of One-/Two-Dimensional Cadmium Phosphites.
    Shankar R, Jakhar E, Chauhan P, Dubey A, Tiwari PK, Basu S.
    Inorg Chem; 2022 Aug 01; 61(30):11550-11555. PubMed ID: 35856872
    [Abstract] [Full Text] [Related]

  • 26. Unravelling the Proton Conduction Mechanism from Room Temperature to 553 K in a 3D Inorganic Coordination Framework.
    Wang Y, Tao Z, Yin X, Shu J, Chen L, Sheng D, Chai Z, Albrecht-Schmitt TE, Wang S.
    Inorg Chem; 2015 Oct 19; 54(20):10023-9. PubMed ID: 26444097
    [Abstract] [Full Text] [Related]

  • 27. Effect of metal ions (Li+, Na+, K+, Mg2+, Ca2+, Ni2+, Cu2+, and Zn2+) and water coordination on the structure of glycine and zwitterionic glycine.
    Remko M, Rode BM.
    J Phys Chem A; 2006 Feb 09; 110(5):1960-7. PubMed ID: 16451030
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  • 28. Synthesis, water adsorption, and proton conductivity of solid-solution-type metal-organic frameworks Al(OH)(bdc-OH)(x)(bdc-NH2)(1-x).
    Yamada T, Shirai Y, Kitagawa H.
    Chem Asian J; 2014 May 09; 9(5):1316-20. PubMed ID: 24652651
    [Abstract] [Full Text] [Related]

  • 29. A unique 3D metal-organic framework based on a 12-connected pentanuclear Cd(II) cluster exhibiting proton conduction.
    Shen Y, Yang XF, Zhu HB, Zhao Y, Li WS.
    Dalton Trans; 2015 Sep 07; 44(33):14741-6. PubMed ID: 26218655
    [Abstract] [Full Text] [Related]

  • 30. Stepwise Construction of Self-Assembled Heterometallic Cages Showing High Proton Conductivity.
    Saha R, Samanta D, Bhattacharyya AJ, Mukherjee PS.
    Chemistry; 2017 Jul 03; 23(37):8980-8986. PubMed ID: 28471006
    [Abstract] [Full Text] [Related]

  • 31. Two-dimensional 3d-4f heterometallic coordination polymers: syntheses, crystal structures, and magnetic properties of six new Co(II)-Ln(III) compounds.
    Díaz-Gallifa P, Fabelo O, Pasán J, Cañadillas-Delgado L, Lloret F, Julve M, Ruiz-Pérez C.
    Inorg Chem; 2014 Jun 16; 53(12):6299-308. PubMed ID: 24901707
    [Abstract] [Full Text] [Related]

  • 32. Syntheses and High Proton Conductivities of Two 3D Zr(IV)/Hf(IV)-MOFs from Furandicarboxylic Acid.
    Zhuang Q, Chen S, Xu K, Kang L, Li Z, Li G.
    Inorg Chem; 2023 Jul 24; 62(29):11570-11580. PubMed ID: 37434493
    [Abstract] [Full Text] [Related]

  • 33. Insulator-to-Proton-Conductor Transition in a Dense Metal-Organic Framework.
    Tominaka S, Coudert FX, Dao TD, Nagao T, Cheetham AK.
    J Am Chem Soc; 2015 May 27; 137(20):6428-31. PubMed ID: 25938518
    [Abstract] [Full Text] [Related]

  • 34. Synthesis and electrochemical properties of substituted heteropoly acid with Dawson structure H7[In(H2O)P2W17O61]·23H2O.
    Qian X, Tong X, Wu Q, He Z, Cao F, Yan W.
    Dalton Trans; 2012 Sep 07; 41(33):9897-900. PubMed ID: 22584288
    [Abstract] [Full Text] [Related]

  • 35. Lanthanide coordination polymers based on 5-(2'-carboxylphenyl) nicotinate: syntheses, structure diversity, dehydration/hydration, luminescence and magnetic properties.
    Gu JZ, Wu J, Lv DY, Tang Y, Zhu K, Wu J.
    Dalton Trans; 2013 Apr 14; 42(14):4822-30. PubMed ID: 23364602
    [Abstract] [Full Text] [Related]

  • 36. Proton Conduction Study on Water Confined in Channel or Layer Networks of La(III)M(III)(ox)3·10H2O (M = Cr, Co, Ru, La).
    Ōkawa H, Sadakiyo M, Otsubo K, Yoneda K, Yamada T, Ohba M, Kitagawa H.
    Inorg Chem; 2015 Sep 08; 54(17):8529-35. PubMed ID: 26280936
    [Abstract] [Full Text] [Related]

  • 37. Organic-inorganic hybrid materials constructed from inorganic lanthanide sulfate skeletons and organic 4,5-imidazoledicarboxylic acid.
    Sun YQ, Yang GY.
    Dalton Trans; 2007 Sep 14; (34):3771-81. PubMed ID: 17712443
    [Abstract] [Full Text] [Related]

  • 38. Transformation of proton-conducting Perovskite-type into fluorite-type fast oxide ion electrolytes using a CO2 capture technique and their electrical properties.
    Trobec F, Thangadurai V.
    Inorg Chem; 2008 Oct 06; 47(19):8972-84. PubMed ID: 18707095
    [Abstract] [Full Text] [Related]

  • 39. Anomalous enhancement of proton conductivity for water molecular clusters stabilized in interstitial spaces of porous molecular crystals.
    Tadokoro M, Ohata Y, Ohhata Y, Shimazaki Y, Ishimaru S, Yamada T, Nagao Y, Sugaya T, Isoda K, Suzuki Y, Kitagawa H, Matsui H.
    Chemistry; 2014 Oct 13; 20(42):13698-709. PubMed ID: 25186220
    [Abstract] [Full Text] [Related]

  • 40. High proton mobility, solvent induced single crystal to single crystal structural transformation, and related studies on a family of compounds formed from Mn3 oxo-clusters.
    Bhattacharya S, Bhattacharyya AJ, Natarajan S.
    Inorg Chem; 2015 Feb 16; 54(4):1254-71. PubMed ID: 25654658
    [Abstract] [Full Text] [Related]


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