J
Jan Reedijk
Researcher at Leiden University
Publications - 1165
Citations - 45902
Jan Reedijk is an academic researcher from Leiden University. The author has contributed to research in topics: Ligand & Crystal structure. The author has an hindex of 80, co-authored 1163 publications receiving 43747 citations. Previous affiliations of Jan Reedijk include Nagoya City University & University of Münster.
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Cisplatinum comprising pharmaceutical
TL;DR: A pharmaceutical composition for use in treatment of a subject having neoplasms with a view to reducing size and/or number of neoplasm, said pharmaceutical composition comprising a complex of a cytostatic compound of the cisplatinum family and an anionic organic compound as a complexed form of the active pharmaceutical component, said complex having general formula (1) wherein Q = -CO- or -PO(O-)-; Y = -CHR'-, -CO-, PO(O)- or a direct bond; Z1, Z2 = independently 0 or NR', R1
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Triethanolamine copper chloride prepared from zerovalent metal: another polymorph of a known Cu(II) compound or a mixed-valence complex with all-trigonal bipyramidal copper?
Larisa Kovbasyuk,Olga Yu. Vassilyeva,Vladimir N. Kokozay,Hyungphil Chun,Ivan Bernal,Jan Reedijk,Gerard A. van Albada,Brian W. Skelton +7 more
TL;DR: Two new copper complexes with triethanolamine (H3L) have been prepared using copper powder and characterized by X-ray crystallography, IR and EPR spectroscopy.
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The isolation and X-ray structure determination of an active intermediate in the accelerated sulfur vulcanization of alkenes
TL;DR: In this article, the isolation characterisation and vulcanization activity of 2,3-dimethylbut-2-en-1-yl dimethyltrithiopercarbamate [C6H11−S−S(S)CNMe2] is described.
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Conformational changes in d (TpG) and 5′GTP induced by monofunctional binding of [PtCl(NH3)3]Cl and [PtCl(dien)] are small☆
TL;DR: In this paper, the binding of the monofunctioal cisplatin model compounds [PtCl(NH 3 )Cl and [pCl(dien)]Cl, to Guanosine-5′-triphosphate (5′GTP) is described.
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Spin‐Peierls transition in a Cu2+ linear chain
TL;DR: In this article, susceptibility vs temperature and high-field (40 T) magnetization data on Cu•HTS were presented in terms of a spin•Peierls transition at about 12 K in this antiferromagnetic S=1/2 linear chain compound.