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Prediction of pattern recognition receptor family using pseudo-amino acid composition Gao QB, Zhao HY, Ye XF, He J Biochemical and Biophysical Research Communications, 417(1), 73, 2012 |
2 |
Pyridine-based cavitands for acid and carboxylate recognition Edwards N, Helgeson R, Zhao YL, Houk KN Molecular Crystals and Liquid Crystals, 456, 175, 2006 |
3 |
pH-dependent excited-state dynamics of [Ru(bpy)(3)](2+)-modified amino acids: Effects of an amide linkage and remote functional groups Geisser B, Ponce A, Alsfasser R Inorganic Chemistry, 38(9), 2030, 1999 |
4 |
Molecular recognition: Schiff base as molecular tweezers Park M, Chung CH, Kim Y Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals, 337, 485, 1999 |
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Synthesis and characterization of molecular rectangles based upon rhenium Thiolate dimers Benkstein KD, Hupp JT, Stern CL Inorganic Chemistry, 37(21), 5404, 1998 |
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Molecular rectangles based on rhenium(I) coordination chemistry Benkstein KD, Hupp JT, Stern CL Journal of the American Chemical Society, 120(49), 12982, 1998 |
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Cell-permeant caged InsP(3) ester shows that Ca2+ spike frequency can optimize gene expression Li WH, Llopis J, Whitney M, Zlokarnik G, Tsien RY Nature, 392(6679), 936, 1998 |
8 |
Synthesis and Selectivity in Metal-Ion Coordination of the New Ligands 1,4,7-Trimethyl-1,7-bis(4-Carboxybenzyl)-1,4,7-Triazaheptane (L) and 1,4,7,16,19,22-Hexamethyl-1,4,7,16,19,22-Hexaaza(9.9)Paracyclophane (L1) - Crystal-Structures of (Pdlh(2)Cl)NO3-Center-Dot-2.6H2O and (Cu(2)L1Cl(2))(Bph(4))(ClO4)Center-Dot-CH3CN Bazzicalupi C, Bencini A, Bianchi A, Fusi V, Giorgi C, Paoletti P, Stefani A, Valtancoli B Inorganic Chemistry, 34(3), 552, 1995 |
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Convergent Functional-Groups .15. Studies of Large and Rigid Molecular Clefts Shimizu KD, Dewey TM, Rebek J Journal of the American Chemical Society, 116(12), 5145, 1994 |