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Journal Abstract Search


185 related items for PubMed ID: 22805556

  • 1. Self-assembling subnanometer pores with unusual mass-transport properties.
    Zhou X, Liu G, Yamato K, Shen Y, Cheng R, Wei X, Bai W, Gao Y, Li H, Liu Y, Liu F, Czajkowsky DM, Wang J, Dabney MJ, Cai Z, Hu J, Bright FV, He L, Zeng XC, Shao Z, Gong B.
    Nat Commun; 2012 Jul 17; 3():949. PubMed ID: 22805556
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  • 3. Persistent Organic Nanopores Amenable to Structural and Functional Tuning.
    Wei X, Zhang G, Shen Y, Zhong Y, Liu R, Yang N, Al-Mkhaizim FY, Kline MA, He L, Li M, Lu ZL, Shao Z, Gong B.
    J Am Chem Soc; 2016 Mar 02; 138(8):2749-54. PubMed ID: 26877246
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  • 4. Switchable Aromatic Nanopore Structures: Functions and Applications.
    Sun M, Lee M.
    Acc Chem Res; 2021 Jul 20; 54(14):2959-2968. PubMed ID: 34213905
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  • 5. Enforced Tubular Assembly of Electronically Different Hexakis(m-Phenylene Ethynylene) Macrocycles: Persistent Columnar Stacking Driven by Multiple Hydrogen-Bonding Interactions.
    Zhong Y, Yang Y, Shen Y, Xu W, Wang Q, Connor AL, Zhou X, He L, Zeng XC, Shao Z, Lu ZL, Gong B.
    J Am Chem Soc; 2017 Nov 08; 139(44):15950-15957. PubMed ID: 29041774
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  • 9. Covalently Linked Hexakis(m-Phenylene Ethynylene) Macrocycles as Molecular Nanotubes.
    Wu CY, Su S, Zhang X, Liu R, Gong B, Lu ZL.
    Angew Chem Int Ed Engl; 2023 Jul 17; 62(29):e202303242. PubMed ID: 37142555
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  • 12. Structural diversity in the self-assembly of pseudopeptidic macrocycles.
    Alfonso I, Bru M, Burguete MI, García-Verdugo E, Luis SV.
    Chemistry; 2010 Jan 25; 16(4):1246-55. PubMed ID: 19998438
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  • 13. Strong aggregation and directional assembly of aromatic oligoamide macrocycles.
    Yang Y, Feng W, Hu J, Zou S, Gao R, Yamato K, Kline M, Cai Z, Gao Y, Wang Y, Li Y, Yang Y, Yuan L, Zeng XC, Gong B.
    J Am Chem Soc; 2011 Nov 23; 133(46):18590-3. PubMed ID: 22023016
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  • 14. Single-file water in nanopores.
    Köfinger J, Hummer G, Dellago C.
    Phys Chem Chem Phys; 2011 Sep 14; 13(34):15403-17. PubMed ID: 21779552
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  • 15. Tubular Unimolecular Transmembrane Channels: Construction Strategy and Transport Activities.
    Si W, Xin P, Li ZT, Hou JL.
    Acc Chem Res; 2015 Jun 16; 48(6):1612-9. PubMed ID: 26017272
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  • 16. Molecular dynamics simulations for designing biomimetic pores based on internally functionalized self-assembling α,γ-peptide nanotubes.
    Calvelo M, Vázquez S, García-Fandiño R.
    Phys Chem Chem Phys; 2015 Nov 21; 17(43):28586-601. PubMed ID: 26443433
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  • 17. Molecular Triangles: A New Class of Macrocycles.
    Wang Y, Wu H, Stoddart JF.
    Acc Chem Res; 2021 Apr 20; 54(8):2027-2039. PubMed ID: 33793191
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  • 18. Self-assembly of amphiphilic dendritic dipeptides into helical pores.
    Percec V, Dulcey AE, Balagurusamy VS, Miura Y, Smidrkal J, Peterca M, Nummelin S, Edlund U, Hudson SD, Heiney PA, Duan H, Magonov SN, Vinogradov SA.
    Nature; 2004 Aug 12; 430(7001):764-8. PubMed ID: 15306805
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  • 19. Controlling Water Flow through a Synthetic Nanopore with Permeable Cations.
    Shen Y, Fei F, Zhong Y, Fan C, Sun J, Hu J, Gong B, Czajkowsky DM, Shao Z.
    ACS Cent Sci; 2021 Dec 22; 7(12):2092-2098. PubMed ID: 34963901
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  • 20. Ultrafast selective transport of alkali metal ions in metal organic frameworks with subnanometer pores.
    Zhang H, Hou J, Hu Y, Wang P, Ou R, Jiang L, Liu JZ, Freeman BD, Hill AJ, Wang H.
    Sci Adv; 2018 Feb 22; 4(2):eaaq0066. PubMed ID: 29487910
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