1 |
Synthesis and characterization of multi-walled carbon nanotubes-supported dibenzo-14-crown-4 ether with proton ionizable carboxyl sidearm as Li+ adsorbents Torrejos REC, Nisola GM, Park MJ, Shon HK, Seo JG, Koo S, Chung WJ Chemical Engineering Journal, 264, 89, 2015 |
2 |
Enantioselective complexation of chiral lariat crown ethers and chiral primary alkylammonium perchlorates Koylu MZ, Aral T, Karakaplan M, Kocakaya SO, Hosgoren H Turkish Journal of Chemistry, 35(2), 171, 2011 |
3 |
Identification of a novel nuclear localization signal and speckle-targeting sequence of tuftelin-interacting protein 11, a splicing factor involved in spliceosome disassembly Tannukit S, Crabb TL, Hertel KJ, Wen X, Jans DA, Paine ML Biochemical and Biophysical Research Communications, 390(3), 1044, 2009 |
4 |
PNP-16-crown-6 derivatives as ion carriers for Zn(II), Cd(II) and Pb(II) transport across polymer inclusion membranes Kozlowski CA, Kozowska J Journal of Membrane Science, 326(1), 215, 2009 |
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Ion flotation of zinc(II) and eadmium(II) with proton-ionizable lariat ethers - Effect of cavity size Ulewicz M, Walkowiak W, Bartsch RA Separation and Purification Technology, 48(3), 264, 2006 |
6 |
Flotation of Co(II), Sr(II), and Cs(I) cations with proton-ionizable lariat ethers Charewicz WA, Grabowska J, Bartsch RA Separation Science and Technology, 36(7), 1479, 2001 |
7 |
Polymer-Supported Crown Ehters: Adsorption Abilities of Lariat Azacrown Ethers Chung KB, Kim HH, Chang SH Journal of Industrial and Engineering Chemistry, 6(1), 8, 2000 |
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A tailored approach to the syntheses of electroactive dendrimers based on diaminoanthraquinones Newkome GR, Narayanan VV, Godinez LA, Perez-Cordero E, Echegoyen L Macromolecules, 32(20), 6782, 1999 |
9 |
Molecular design of crown ethers. 16. Calorimetric titration of complexation of light lanthanoid nitrates with N-benzylaza-16-crown-5 and 15,15-dimethyl-16-crown-5 in acetonitrile : Enhanced selectivity for Pr3+ Liu Y, Bai XP, Inoue Y, Ouchi M Journal of Physical Chemistry B, 102(25), 4871, 1998 |
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Group II intron splicing in vivo by first-step hydrolysis Podar M, Chu VT, Pyle AM, Perlman PS Nature, 391(6670), 915, 1998 |