Oligo(ethylenoxy)oxy‐überbrückte Stilbene als Komplexliganden: σ‐ und π‐gebundene Ag+‐ und Na+‐Ionen
暂无分享,去创建一个
[1] J. Lex,et al. Alkali Metal Complexes of o, o′‐(Tetraethyleneglycoldiyl)‐(Z)‐stilbene: One Common Ligand Conformation for Li, Na, K, and Rb Ions , 1997 .
[2] J. Lex,et al. Alkalimetallkomplexe von o,o′‐(Tetraethylenglycoldiyl)‐(Z)‐stilben: eine gemeinsame Ligandenkonformation für Li‐, Na‐, K‐ und Rb‐Ionen , 1997 .
[3] H. Plenio,et al. Coordination Chemistry with CF Units as σ Donors: Ag+ Complexes of Partially Fluorinated Crown Ethers with Direct Metal–Fluorine Interactions , 1996 .
[4] H. Holdt,et al. Silver(I) Sandwich Complexes of Oxa‐Crowned Derivatives of Dithiomaleonitrile , 1996 .
[5] Y. Miyahara,et al. “Cation‐π Interactions” Detected by Mass Spectrometry; Selective Recognition of Alkali Metal Cations by a π‐Basic Molecular Cavity , 1995 .
[6] Seiji Shinkai,et al. Selektive Erkennung von Alkalimetall-Kationen durch π-basische, molekulare Hohlräume und einfacher massenspektrometrischer Nachweis von Kation-Aren-Komplexen , 1995 .
[7] B. Cox,et al. Stability constants of silver(I) complexes with diaza‐18‐crown ethers in polar solvents , 1994 .
[8] B. Cox,et al. Enthalpies and entropies of complexation of silver(I) and diaza-18-crown ethers in polar solvents , 1994 .
[9] Wei Xu,et al. Silver ion inclusion by calix[4]arene ethers , 1994 .
[10] J. Forman,et al. Molecular recognition in aqueous media. New binding studies provide further insights into the cation-π interaction and related phenomena , 1993 .
[11] G. Gokel,et al. Ferrocenyl iron as a donor group for complexed silver in ferrocenyldimethyl[2.2]cryptand: A redox-switched receptor effective in water , 1992 .
[12] Ronald L. Bruening,et al. Thermodynamic and kinetic data for macrocycle interactions with cations and anions , 1991 .
[13] A. Goldman,et al. Atomic structure of acetylcholinesterase from Torpedo californica: a prototypic acetylcholine-binding protein , 1991, Science.
[14] G. Subramaniam,et al. A 1:1 complex of silver with a cofacial stilbene: [(Z)-2,2,5,5-tetramethyl-3,4-diphenylhex-3-ene]silver(I) triflate , 1990 .
[15] R. M. Izatt,et al. Proton‐ionizable crown compounds. 13. Synthesis and structural studies of crown compounds containing the triazole subcyclic unit and lipophilic substituents , 1987 .
[16] Michael C. Zerner,et al. Calculated spectra of hydrated ions of the first transition-metal series , 1986 .
[17] J. Clardy,et al. Pentacyclo[12.2.2.22,5.26,9.210,13]-1,5,9,13-tetracosatetraene and its reaction with silver trifluoromethanesulfonate. Synthesis of a square-planar d10 organometallic complex. , 1986, Journal of the American Chemical Society.
[18] G. Sheldrick,et al. Silver‐Catalyzed Formation of Crown Ethers; Synthesis and Structure of [Ag([12]crown‐4)2][AsF6] , 1984 .
[19] T. Gries,et al. Silber‐katalysierte Bildung von Kronenethern: Synthese und Struktur von [Ag([12]Krone‐4)2][AsF6] , 1984 .
[20] F. Vögtle,et al. Stereologe Kronenether: π-Donorbeteiligung bei der Komplexierung von Kationen? , 1983 .
[21] I. F. Taylor,et al. 1,2‐Diphenylethanesilver(I) perchlorate , 1975 .
[22] E. L. Amma,et al. Metal ion-aromatic complexes. XII. Crystal and molecular structures of acenaphthenesilver perchlorate and acenaphthylenesilver perchlorate , 1972 .
[23] B. Pasquier,et al. Etude par spectroscopie infrarouge de 4000 cm−1 à 33 cm−1 des complexes solides C6H6AgAlCl4 et C6D6AgAlCl4 C6H6CuAlCl4 et C6D6CuAlCl4 , 1970 .
[24] W. E. Streib,et al. The crystal and molecular structure of the silver nitrate complex of cis,cis,cis-1,4,7-cyclononatriene, C9H12(Ag-No3)3 , 1967 .
[25] R. E. Rundle,et al. The Silver Perchlorate-Benzene Complex, C6H6·AgClO4, Crystal Structure and Charge Transfer Energy1 , 1958 .