Blattartige und helicale Koordinationspolymere, {ΛL‐[Ag{Co(L‐cys‐N,S)(en)2}](NO3)2}∞ 1 bzw. {ΔL‐[Ag{Co(L‐cys‐N,S)(en)2}](NO3)2}∞ 2, entstanden bei der Umsetzung von ΛL‐ bzw. ΔL‐[Co(L‐cys‐N,S)(en)2]+ (L‐cys=L‐Cysteinat, en=H2NCH2CH2NH2) mit AgNO3 in Wasser. Ihre Strukturen ähneln denen der β‐Faltblatt‐ bzw. α‐Helixform von Proteinen. Verbindung 2 lässt sich durch Wechsel des pH‐Werts der Lösung reversibel in eine dritte Verbindung überführen.
No abstract
During the past decade considerable progress has been made in the design and creation of supramolecular systems. [1] While the majority of supramolecular species have been constructed from organic ligands and metal ions by spontaneous self-assembly, our strategy is to use metal thiolate complexes as building blocks which can aggregate by forming S-bridged structures with a variety of metal ions. [2] In particular, we are interested in the aggregation of tris(chelate)-type octahedral complexes with simple bidentate N,S-thiolate ligands such as 2-aminoethanethiolate (aet NH 2 CH 2 CH 2 S À ) and l-cysteinate (l-cys NH 2 CH(COO À )CH 2 S À ), with the aim of creating chiral supramolecular architectures. [3] To date, a number of chiral aggregates based on the octahedral [M(aet) 3 ] unit (M Co III , Rh III , Ir III ) with three thiolate donors, such as trinuclear [Co III {M(aet) 3 } 2 ] 3 , [4] pentanuclear [Ag I 3 {M(aet) 3 } 2 ] 3 , [5] and octanuclear [Zn II 4 O{M(aet) 3 } 4 ] 6 , [6] as well as analogous aggregates based on the [M(l-cys-N,S) 3 ] 3À unit, have been prepared, and their unique stereochemical, spectroscopic, and redox properties have been extensively studied. In contrast, the aggregation of octahedral complex units with a single thiolate donor has been studied far less; only a few trinuclear and tetranuclear species such as [Co(aet)(en) 2 ] 2 or [Co(SCH 2 COO)(en) 2 ] (en NH 2 CH 2 CH 2 NH 2 ) have been reported. [7] To expand the range of chiral supramolecular architectures based on octahedral complex units with thiolate donors, it is desirable to find the key factors that control their aggregation by studying the fundamental [Co III (thiolato-S)(amine-N) 5 ] system. We therefore started by investigating the aggregation of [Co(aet)(en) 2 ] 2 and [Co(l-cys-N,S)(en) 2 ] assisted by metal ions. Recently, we found that the reaction of racemic [Co(aet)(en) 2 ] 2 with AgNO 3 in a 1:1 ratio gives an S-bridged Co III Ag I coordination polymer having a onedimensional infinite zigzag chain structure, namely, {[Ag{Co(aet)(en) 2 }](NO 3 ) 3 } I . [8] Interestingly, the chain structure discriminated the chiral configuration (L or D) of [Co(aet)(en) 2 ] 2 to give exclusively the enantiomeric (L-Co III Ag I ) I and (D-Co III Ag I ) I chains, which separate from one another as homochiral crystals. Given this result, we expected that similar (Co III Ag I ) I chiral chain structures would be formed on using the L L or D L diastereomer of [Co(l-cys-N,S)(en) 2 ] instead of racemic [Co(aet)(en) 2 ] 2 . Indeed, we found that the reactions of L L -or D L -[Co(l-cys-N,S)(en) 2 ] with AgNO 3 lead to the formation of fascinating chiral supramolecular structures, which are markedly dependent on whether the L L or D L diastereomer is used (Scheme 1).Treatment of a dark brown aqueous solution of L L -[Co-(l-cys-N,S)(en) 2 ](ClO 4 ) [9] with AgNO 3 in a 1:1 ratio at room temperature gave a dark red solution, from which red plate crystals of 1 were isolated by adding an aqueous solution of NaNO 3 . The electronic absorption s...
X-ray structure determinations of [NiCl(H2O)(232-tet)]Cl (1) and [Ni(H2O)2(323-tet)]Cl2.3/2H2O (2) were carried out at the temperature between 123 to 293K (232-tet = N,N-f-bis(2-aminoethyl)-1,3-propanediamine; 323-tet = N,N-f-bis(3-aminopropyl)ethylene-diamine). The polyamine ligands are both coordinated in planar conformation, and the bond lengths of Ni to axial ligands are largely affected by the temperature. For 1, Ni-Cl and Ni-O distances of 2.475 and 2.176 Å respectively at 130 K is elongated to 2.485 and 2.192 Å respectively at 293 K, while the averaged Ni-N length are 2.082 and 2.083 Å for 130 and 293 K, respectively. Those for 2 are 2.142 to 2.165 Å for averaged Ni-O distances and 2.100 to 2.098 Å for the averaged Ni-N length, respectively.
Sheetlike and helical coordination polymers, {ΛL‐[Ag{Co(L‐cys‐N,S)(en)2}](NO3)2}∞ (1) and {ΔL‐[Ag{Co(L‐cys‐N,S)(en)2}](NO3)2}∞ (2), were obtained by treating ΛL‐ and ΔL‐[Co(L‐cys‐N,S)(en)2]+ (L‐cys=L‐cysteinate, en=H2NCH2CH2NH2) with AgNO3 in water, respectively. Their structures are comparable to those of the β‐sheet and α‐helix forms of proteins. Compound 2 undergoes reversible conversion into a third compound on changing the pH of the solution.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.
customersupport@researchsolutions.com
10624 S. Eastern Ave., Ste. A-614
Henderson, NV 89052, USA
This site is protected by reCAPTCHA and the Google Privacy Policy and Terms of Service apply.
Copyright © 2024 scite LLC. All rights reserved.
Made with 💙 for researchers
Part of the Research Solutions Family.