Register      Login
Australian Journal of Chemistry Australian Journal of Chemistry Society
An international journal for chemical science

Articles citing this paper

Copper(II) catalysis of the hydrolysis of glycylglycine

IJ Grant and RW Hay
18(8) pp.1189 - 1195


22 articles found in Crossref database.

Metal(II)-Ion Promoted Hydrolysis of Glycylglycine
Nakata Toshio, Tasumi Mitsuo, Miyazawa Tatsuo
Bulletin of the Chemical Society of Japan. 1975 48(5). p.1599
Studies on the preparation and properties of conductive polymers. Part II. Novel method to prepare metallized plastics from metal chelates of polyamides
Yen Chih‐Chao, Huang Chueh‐Jung, Chang Teh‐Chou
Journal of Applied Polymer Science. 1991 42(2). p.439
The palladium(II) promoted hydrolysis of the methyl esters of glycyl-L-leucine, glycyl-L-alanine and L-alanylglycine
Hay Robert W., Pujari Mahesh P.
Inorganica Chimica Acta. 1986 123(3). p.175
New Regioselectivity in the Cleavage of Histidine-Containing Peptides by Palladium(II) Complexes Studied by Kinetic Experiments and Molecular Dynamics Simulations
Parac Tatjana N., Ullmann G. Matthias, Kostić Nenad M.
Journal of the American Chemical Society. 1999 121(13). p.3127
Amide bond hydrolysis in peptides and cyclic peptides catalyzed by a dimeric Zr(iv)-substituted Keggin type polyoxometalate
Ly Hong Giang T., Absillis Gregory, Parac-Vogt Tatjana N.
Dalton Transactions. 2013 42(30). p.10929
Catalytic Hydrolysis of Peptides by Cerium(IV)
Takarada Tohru, Yashiro Morio, Komiyama Makoto
Chemistry – A European Journal. 2000 6(21). p.3906
Unprecedented Acceleration of Zirconium(IV)-Assisted Peptide Hydrolysis at Neutral pH
Kassai Miki, Ravi R. Gnana, Shealy Sarah J., Grant Kathryn B.
Inorganic Chemistry. 2004 43(20). p.6130
Hydrolysis of Dipeptides with Metal Oxides
Suzuki Shinnichiro, Watanabe Ken-ichi
Bulletin of the Chemical Society of Japan. 1970 43(12). p.3858
Development and validation of a stability indicating HPLC-DAD method for the determination of the peptide stigmurin
Porto Dayanne Lopes, da Silva Antonio Rodrigo Rodriges, Oliveira Artur de Santana, Nogueira Fernando Henrique Andrade, Pedrosa Matheus de Freitas Fernandes, Aragão Cícero Flávio Soares
Microchemical Journal. 2020 157 p.104921
Molecular recognition of dipeptides. Catalysis of deuteration and hydrolysis of glycylglycine by dinuclear OBISDIEN Zn(II) complexes
Bordignon Luiz Marilde T., Szpoganicz Bruno, Rizzoto Marcela, Basallote Manoel G., Martell Arthur E.
Inorganica Chimica Acta. 1999 287(2). p.134
Effects of Linkage Isomerism and of Acid−Base Equilibria on Reactivity and Catalytic Turnover in Hydrolytic Cleavage of Histidyl Peptides Coordinated to Palladium(II). Identification of the Active Complex between Palladium(II) and the Histidyl Residue
Parac Tatjana N., Kostić Nenad M.
Journal of the American Chemical Society. 1996 118(25). p.5946
Hydrolysis of Dipeptides Catalyzed by a Zirconium(IV)‐Substituted Lindqvist Type Polyoxometalate
Ly Hong Giang T., Absillis Gregory, Bajpe Sneha R., Martens Johan A., Parac‐Vogt Tatjana N.
European Journal of Inorganic Chemistry. 2013 2013(26). p.4601
The effect of co-ordination to copper (II) on the basic hydrolysis of glycylglycine
Jones M.M., Cook T.J., Brammer S.
Journal of Inorganic and Nuclear Chemistry. 1966 28(5). p.1265
Formation of Lanthanide Complexes with Bipyridine-Functionalized Amide Compounds and Their Unusually High Amide Reactivity
Kawaguchi Satoshi, Kajikawa Takeshi, Kaneko Mariko, Koshimizu Takahiro, Araki Koji
Bulletin of the Chemical Society of Japan. 1999 72(12). p.2729
Cu(II)-Promoted hydrolysis of -Benzoyliminodiacetic acid
Chen Kuangmin, Wathen Steven P., Czarnik Anthony W.
Tetrahedron Letters. 1992 33(42). p.6303
The Simulation Analysis of Dipeptide Hydrolysis Catalyzed by Divalent Metal Ions
Ohkubo Katsutoshi, Sakamoto Hiroyuki
Bulletin of the Chemical Society of Japan. 1973 46(8). p.2579
Advances in Physical Organic Chemistry Volume 42 (2007)
Brown R. Stan, Neverov Alexei A.
Equilibrium studies and molecular recognition in the glycylglycine, dl-alanyl-dl-alanine and glycyl-l-leucine Cu(II)-1,4,7,13,16,19-hexaaza-10,22-dioxacyclotetracosane complexes
Bordignon Luiz Marilde T., Szpoganicz Bruno, Rizzoto Marcela, Martell Arthur E., Basallote Manuel G.
Inorganica Chimica Acta. 1997 254(2). p.345
Bimetallic Ce/Zr UiO-66 Metal–Organic Framework Nanostructures as Peptidase and Oxidase Nanozymes
Loosen Alexandra, Simms Charlotte, Smolders Simon, De Vos Dirk E., Parac-Vogt Tatjana N.
ACS Applied Nano Materials. 2021 4(6). p.5748
Reactions of Coordinated Ligands (1989)
Hay Robert W.
Cerium(IV)–cyclodextrin complex for peptide hydrolysis in neutral homogeneous solutions
Yashiro Morio, Takarada Tohru, Miyama Sachiko, Komiyama Makoto
J. Chem. Soc., Chem. Commun.. 1994 (15). p.1757
The base hydrolysis ofmer-[Co(1,5-diamino-3-azapentane)(amino acidate)X]+ (X = Cl or NO2) complexes and base hydrolysis of complexed peptides in the coordination sphere of the [Co(dien)]3+ moiety
Hay Robert W., Reid Valerie M. C., Piplani Dharam P.
Transition Metal Chemistry. 1986 11(8). p.302

Committee on Publication Ethics


Abstract Export Citation Get Permission