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1.
Specific magnetic susceptibilities (s) of several newly synthesized chelates of some of the lanthanons [La(III), Pr(III) and Nd(III)] are reported. These derivatives are of the general type,Ln(O-i-C3H7)3–n (C6H5CHNRO) n [where,Ln=La(III), Pr(III) or Nd(III);n=1 or 2 and R=CH2CH2, CH2CHCH3 or C6H4] and have been prepared by the reaction of the alkoxides of the lanthanons withSchiff bases such as benzylidene-2-hydroxyethylamine (C6H5CHNCH2CH2OH), benzylidene-2-hydroxy-n-propylamine (C6H5CHNCH2CHOHCH3) and benzylidene-o-aminophenol (C6H5CHNC6H4OH) in different molar relations in dry benzene.The resulting crystalline derivatives are non-volatile, light to deep yellow or blackish in colour. These tend to polymerize on keeping as shown by their insoluble nature and higher melting points, the polymerisation possibly occurring by the intermolecular coordination through oxygen atoms as reported earlier1.UsingGouy method2, the bis-isopropoxy mono-Schiff base and mono-isopropoxy bis-Schiff base complexes of La(III) have been shown to be diamagnetic, with s values being in the range of –0.32 to –0.45×10–6 and –0.39 to –0.55×10–6 c.g.s. units at 305 K respectively.In the remaining derivatives, Pr(O-i-C3H7)3–n (C6H5CH NRO) n and Nd(O-i-C3H7)3–n (C6H5CHNRO) n (where,n=1 or 2 and R=CH2CH2, CH2CHCH3 or C6H4) the magnetic moment values range between 3.25 to 3.32 and 3.30 to 3.33 B respectively indicating their paramagnetic nature.  相似文献   

2.
11 and 12 molar reactions of tin(IV) chloride with theSchiff bases, HO–C6H4CHNROH [where R=–(CH2)2–, –CH2–, –CH(CH3)–, –(CH2)3–, and –CH(C2H5)CH2–] have been studied in different stoichiometric ratios and derivatives of the type SnCl4(SBH2) and SnCl4(SBH2)2 (whereSBH2 represents theSchiff base molecule) have been isolated. These have been characterised by elemental analysis, conductivity measurements and I.R. spectral studies.  相似文献   

3.
Several newSchiff base derivatives of antimony(III) have been synthesized by the reaction of antimony(III) isopropoxide with theSchiff bases having the donor system, O–N–O. The reactions in 1:1 and 2:3 molar ratios [Sb(O-i-C3H7)3: :Schiff base] have yielded Sb(O-i-C3H7) (SB) and Sb2 (SB)3 type of derivatives (whereSB represents the anion of theSchiff base andSBH2=o-hydroxyacetophenone-2-hydroxy-1-propylimine, o-hydroxycetophenone-3-hydroxy-1-propylimine, salicylidene-2-hydroxyethylamine, salicylidene-2-hydroxy-1-propylamine and 2-hydroxy-1-naphthylidene-2-hydroxyethylamine) resp. In the resultingSchiff base derivatives, the central antimony atom appears to be tetracoordinated as indicated by their monomeric state determined ebullioscopically. The infrared spectra of the resulting complexes have been recorded and tentative structures indicated. The thermogravimetric analysis of antimony-monoisopropoxysalicylidene-2-hydroxy-1-propylamine has also been carried out.With 1 Figure  相似文献   

4.
Several newSchiff base derivatives of aluminium have been synthesized by the reaction of aluminium isopropoxide with theSchiff bases having the donor system, O–N–O. The reactions in 11 and 23 molar ratios [Al(OPr i)3:Schiff base] have yielded Al(OPr i)(SB) and Al2(SB)3 types of products [where SB–- represents the anion of theSchiff base andSBH2= (2-hydroxy-1-naphthylidene)-2-hydroxyethylamine, (2-hydroxy-1-naphthylidene)-3-hydroxy-1-propylamine, (2-hydroxy-1-naphthylidene)-1-hydroxy-sec.-butylamine and (o-hydroxyacetophenone)-3-hydroxy-1-propylimine, resp. In these resulting monoisopropoxy aluminiumSchiff base and dialuminium tris-Schiff base derivatives, the central aluminium atom appears to be penta-and tetracoordinated, resp., as indicated by their dimeric and monomeric states determined ebullioscopically. The infrared spectra of the resulting derivatives have also been recorded and tentative assignments have been made.  相似文献   

5.
Reactions of the isopropoxides of some of the lighter lanthanons with bidentate -ketoimines, such asAAH-n-C4H9 andAAH-C6H5 (donor system: N,OH) and tridentate -ketoimines such asAA(CH2CH2)H2 andAA(CH2CHCH3)H2 (donor system: HO,N.OH) have led to products of the typesLn(O-i-C3H7)3n (AA-R) n ,Ln(Oi-C3H7) (AAR') andLn 2(AAR')3 [Ln=La(III), Pr(III) or Nd(III);n=1 or 2;R=-n-C4H9 or-C6H5 andR'=-CH2CH2-or-CH2CHCH3-]. Some undergo exchange reactions with an excess oftert-butanol, leading to the corresponding complexesLn(O-tert-C4H9)3n (AA-n-C4H9) n andLn(O-tert-C4H9) (AA-CH2CH2). All these have been characterised by elemental analysis, molecular weight determinations and their ir spectra. A thermogravimetric analysis of the diisopropoxy derivatives has also been carried out.
Schiff-Basen Derivate von Lanthaniden-Synthese von La(III), Pr(III) und Nd(III) chelaten mit -Ketoiminen
Zusammenfassung Reaktionen von Lanthanid-Isopropoxiden mit zweizähnigen -Ketoiminen [AAH-n-C4H9 undAAH-C6H5; Donorsystem: N,OH] und dreizähnigen -Ketoiminen [AA(CH2CH2)H2 undAA(CH2CHCH3)H2; Donorsystem: OH, N,OH] führten zu Produkten vom, TypLn(O-i-C3H7)3-n (AA-R) n ,Ln(O-i-C3H7) (AAR') undLn 2(AAR')3 [Ln=La(III), Pr(III) oder Nd(III);n=1 oder 2;R=n-C4H9 oder C6H5 undR'=CH2CH2 oder CH2CHCH3]. Einige Komplexe unterliegen bei Behandlung mit einem Überschuß vontert-Butanol einer Austauschreaktion, die zu den entsprechenden Butoxid-Komplexen führt [Ln(O-tert-C4H9)3-n , (AA-n-C4H9) n undLn(O-tert-C4H9) (AACH2CH2)]. Alle Derivate wurden mittels Elementaranalyse, Molgewichtsbestimmung und IR-Spektroskopie charakterisiert. Eine thermogravimetrische Analyse der Diisopropoxi-Derivate wurde ebenfalls ausgeführt.
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6.
Reactions of silicon tetraacetate with different types ofSchiff bases have been investigated in anhydrous benzene. Monofunctional bidentate, C6H5CHNXOH and HORCHNC6H5 [whereX=CH2CH2, CH2CH(CH3) or o-C6H4 and R=o-C6H4 or 2,1-C10H6], bifunctional tridentate, o-HOC6H4CHNYOH [whereY=CH2CH2 or CH2CH(CH3)] and bifunctional tetradentateSchiff bases, o-HOC6H4C(CH3)N(CH2) n NC(CH3)C6H4OH-o (wheren=2 or 3) have been shown to yield derivatives of the type, Si(OAc)4– m L m, Si(OAc)4–2 n L n and Si(OAc)2 L (wherem=1,2 or 3;n=1 or 2 and HL, H2 L and H2 L represent the molecules of monofunctional bidentate, bifunctional tridentate and bifunctional tetradentateSchiff bases resp.) and have been found to be monomeric in boiling benzene. Tentative structures based on IR and in a few cases PMR spectra have been indicated for the resulting derivatives.With 2 Figures  相似文献   

7.
Bibasic tetradentateSchiff bases having the donor system OH–NX–NX–OH have been shown to form UO2(NO3)2(SBH2) type of derivatives [SBH2 is the molecule of the bibasic tetradentateSchiff bases such as HOC6H4C(R) N(CH2) n NC(R)C6H4OH (where R=H or CH3 andn=2 or 3) and HOC(R)CHC(CH3)N(CH2) n NC(CH3)CH C(R)OH (where R=CH3 or C6H5 andn=2 or 3)]. The 11 stoichiometry of these complexes is shown by elemental analysis and conductometric titrations. The molar conductence values in nitrobenzene indicate the non-electrolytic behaviour and the magnetic susceptibility measurements by the Gouy method show these complexes to be diamagnetic.With 1 Figure  相似文献   

8.
The reaction of the heteroleptic Nd(III) iodide, [Nd(L′)(N″)(μ-I)] with the potassium salts of primary aryl amides [KN(H)Ar′] or [KN(H)Ar*] affords heteroleptic, structurally characterised, low-coordinate neodymium amides [Nd(L′)(N″)(N(H)Ar′)] and [Nd(L′)(N″)(N(H)Ar*)] cleanly (L′ = t-BuNCH2CH2[C{NC(SiMe3)CHNt-Bu}], N″ = N(SiMe3)2, Ar′ = 2,6-Dipp2C6H3, Dipp = 2,6-Pri2C6H3, Ar* = 2,6-(2,4,6-Pri3C6H2)2C6H3). The potassium terphenyl primary amide [KN(H)Ar*] is readily prepared and isolated, and structurally characterised. Treatment of these primary amide-containing compounds with alkali metal alkyl salts results in ligand exchange to give alkali metal primary amides and intractable heteroleptic Nd(III) alkyl compounds of the form [Nd(L′)(N″)(R)] (R = CH2SiMe3, Me). Attempted deprotonation of the Nd-bound primary amide in [Nd(L′)(N″)(N(H)Ar*)] with the less nucleophilic phosphazene superbase ButNP{NP(NMe2)3}3 resulted in indiscriminate deprotonations of peripheral ligand CH groups.  相似文献   

9.
Reactions of Aluminium isopropoxide with monofunctional bidentateSchiff bases, such as salicylidene-o-toluidine, salicylidene-p-toluidine, 2-hydroxy-1-naphthylmethylidene-p-toluidine and 2-hydroxy-1-naphthylmethylidene-p-toluidine in different stoichiometric ratios have yielded products of the type Al(OPr i)2(SB), Al(OPr i)(SB)2, and Al(SB)3 (whereSB is the anion of the correspondingSchiff base,SBH). Bifunctional tetradentateSchiff bases in 11 and 23 molar ratios [Al(OPr i)3:SBH2] yielded insoluble derivatives of the type Al(OPr i)SB and Al2(SB)3 (whereSB represents the anion of theSchiff baseSBH2 andSBH2=bis-salicylaldehyde-o-phenylene-diamine or bis-salicylaldehyde-p-phenylenediamine). The newSchiff base derivatives have been characterized by elemental analyses, infrared spectroscopy and molecular weight determinations.  相似文献   

10.
Hexa-coordinatedSchiff base complexes of germanium of the general type Ge(OC2H5)2(SB)2 (SB is the anion of the monofunctional bidentateSchiff base,SBH) have been synthesized by the reaction between ethyl-orthogermanate and theSchiff base in benzene medium. Always a 12 complex is obtained irrespective of the molar ratios in which the reactants are used. The resulting new complexes have been characterized by elemental analysis, molecular weight determinations, infrared and proton magnetic resonance spectra and found to be non-electrolytes inDMF.
N-Substitwierte Salicylaldimin-Komplexe des Germanium(IV)
Zusammenfassung Es wurden hexa-koordinierteSchiff-Basen Komplexe des Germanium(IV), vom generellen Typ Ge(OC2H5)2(SB)2 (SB ist das Anion der monofunktionellen, zweizähnigenSchiff-BaseSBH), über die Reaktion von Ethylorthogermanat mit der entsprechendenSchiff-Base hergestellt. Es wurden durchwegs 12-Komplexe erhalten. Elementaranalyse, Molgewichtsbestimmung und IR- und NMR-Spektroskopie wurden zur Charakterisierung der Komplexe herangezogen.
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11.
Oxalates of La(III), Ce(III), Pr(III), Nd(III) and Sm(III) with the hydrazinium cation with the general formulae (N2H5)4Ln2(C2O4)57H2O (Ln=La3+, Ce3+, Pr3+) and N2H5Ln(C2O4)2·3.5H2O (Ln=Nd3+, Sm3+) were synthesized. The thermal decompositions of these compounds take place in three stages: thermal dehydration at 65–100°C, exothermic decomposition of the N2H4 at 230–260°C, and oxidation of the oxalate ion.This revised version was published online in November 2005 with corrections to the Cover Date.  相似文献   

12.
Summary The Schiff base ligand diethyl(ethylenebis--aminocrotonate) (LH2) reacts with lanthanide(III) chlorides and nitrates in various solvents to give solid complexes of the stoichiometriesLn(LH2)Cl3 (Ln=La–Yb),Ln(LH2)2Cl3 (Ln=La–Sm),Ln 2(LH2)3Cl6(Ln=Eu–Yb) andLn(LH2)(NO3)3 (Ln=La–Yb). Properties, conductivity measurements, X-ray powder patterns, thermal data, magnetic moments and spectroscopic (IR,1H-NMR, electronic diffuse reflectance and solid state emission f-f spectra) are discussed in terms of the nature of the bonding and the possible structural types.
Synthese und Charakterisierung der Komplexe von Lanthanid(III)chloriden und -nitraten mit der vierzähnigen Schiff-Base Diethyl(ethylenbis--aminocrotonat)
Zusammenfassung Der Schiffbasen-Ligand Diethyl(ethylenbis--aminocrotonat) reagiert mit Lanthanid(III)chloriden und -nitraten in verschiedenen Lösungsmitteln unter der Bildung von festen Komplexen der StöchiometrienLn(LH2)Cl3 (Ln = La – Yb),Ln(LH2)2Cl3 (Ln = La – Sm),Ln(LH2)3Cl6 (Ln = Eu – Yb) undLn(LH2)(NO3)3 (Ln = La – Yb). Die allgemeinen Eigenschaften, Leitfähigkeitsmessungen, Röntgen-Pulverdiagramme, thermische Daten, magnetische Momente und spektroskopische Daten (IR,1H-NMR, Elektronenreflexionsspektren und Festkörperemissions-f-f-Spektren) werden im Hinblick auf die Bildungsverhältnisse im Komplex und strukturelle Möglichkeiten diskutiert.
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13.
The reactions of Ln(NO3)3?6H2O (Ln=Pr, Nd or Er) with the potentially tridentate O,N,O chelating ligand 2,6-pyridinedimethanol (H2pydm) in a 1:2 M ratio were investigated, and complexes with the formula [Ln(H2pydm)2(NO3)2](NO3) (Ln=Pr or Nd) (1 and 2) and [Er(H2pydm)3](NO3)3 (3) were isolated. The compounds contain 10-coordinate Pr(III) and Nd(III) ions that crystallize in the triclinic space group P-1 while the 9-coordinate Er(III) complex crystallizes in the monoclinic system (P21/n). A new lanthanide complex, [Pr(H2pydm)3](Cl)3?DMF (4), has been synthesized by reaction of PrCl3?6H2O and H2pydm. The nine-coordinate Pr(III) is bound to three H2pydm ligands. X-ray crystal structures of 1–4 reveal that the ligand coordinates tridentate via the pyridyl nitrogen and the two hydroxyl oxygens. The electronic absorption spectra of 1–4 show 4f–4f transitions.  相似文献   

14.
Two series of complexes of meconic acid (H3 Mec) with rare-earths have been prepared by varying the preparative procedure. The compounds have the general formulae, [Ln(Mec) (H2O)2]·3 H2O (whereLn=La, Ce, Pr, Nd, Sm, Ho and Y) and [Ln(HMec) (H2 Mec) (H2O)2]·4 H2O (whereLn=La, Pr, Nd and Sm). The infrared spectral data indicate that the carboxylate groups are bound to the rare-earth metal in a bidentate fashion. Thermal studies indicate that two water molecules are coordinated in each case. The complexes are probably polymeric.
Komplexe von Seltenerd-Metallen mit Meconsäure
Zusammenfassung Es wurden zwei Reihen von Komplexen der Meconsäure (H3 Mec) mit Seltenerd-Metallen mit den allgemeinen Formeln [Ln(Mec)(H2O)2]·3 H2O (Ln=La, Ce, Pr, Nd, Sm, Ho, Y) und [Ln(HMec)2(H2 Mec) (H2O)2]·4 H2O (Ln=La, Pr, Nd, Sm) hergestellt. Die IR-Spektren zeigen, daß die Carboxylat-Gruppen in zweizähniger Weise mit den Metallionen koordinieren; thermische Untersuchungen ergeben, daß in beiden Reihen jeweils zwei Wassermoleküle zusätzlich koordiniert sind. Die Komplexe weisen wahrscheinlich eine Polymerstruktur auf.
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15.
Summary Iron(III) complexes of the formcis-[Fe(SB(X - K)] in whichSB 2– are open-chain tetradentateSchiff base N2O2-ligands ofacacen,benacen orsalen type, andX - K are bidentate anions of kojic acid (5-hydroxy-2-hydroxymethyl-4H-pyran-4-one) or other -pyranones undergo photoredox transformations when being irradiated in methanol into intraligand orLMCT bands. The quantum yields of the photoredox reactions depend on the peripheral constitution of the N2O2 ligands, the substituentsA andB of the ligandsX - K , and the wavelength of irradiation irr. The proposed mechanism involves the population of photoredox reactiveLMCT states by photophysical deactivation steps, primary photoredox formation ofX - K radicals and Fe(II), and subsequent dark redox processes giving back the anionsX - K and the final products Fe(II) and formaldehyde formed in the molar ratio 2:1.
Photoredoxeigenschaften von Fe(III)-Komplexen von Kojic Acid und ihren Derivaten
Zusammenfassung Eisen(III)-Komplexe der Formcis-[Fe(SB)(X - K)] mitSB 2–=offenkettige tetradentateSchiff-Basen-N2O2-Liganden undX - K =bidentate Anionen von 5-Hydroxy 2-hydroxymethyl-4H-pyran-4-on oder andere -Pyranone unterliegen bei Bestrahlung in Methanol Photoredoxumwandlungen, was durch Intraligand- oderLMCT-Banden belegt wird. Die Quantenausbeuten der Reaktionen hängen von der Konstitution der N2O2-Liganden, den SubstituentenA undB und dem LigandenX - K sowie der Anregungswellenlänge irr ab. Der vorgeschlagene Mechanismus beinhaltet die Population photoredoxreaktiverLMCT-Zustände durch photophysikalische Deaktivierungsschritte, die Bildung vonX - K*-Radikalen und Fe(II) und-Über Dunkelprozesse — die Rückbildung der AnionenX - K sowie die Reaktion zu den Endprodukten Fe(II) und Formaldehyd im molaren Verhältnis 2:1.
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16.
Bifunctional tridentate Schiff bases such as, $$\begin{gathered} HOC_6 H_4 C(CH_3 ) : NCH_2 CH_2 OH, \hfill \\ HOC_6 H_4 C(CH_3 ) : NCH_2 CH_2 (OH)CH_3 , \hfill \\ HOC_6 H_4 C(H) : NCH_2 CH_2 OH \hfill \\ \end{gathered} $$ and HOC6H4C(H)∶NCH2CH(OH)CH3 react with La(III), Pr(III) and Nd(III) isopropoxides to 1∶1 and 2∶3 derivatives of the type,Ln(O?i-C3H7)(OC6H4C[R]∶NR′O) andLn 2(OC6H4C[R]∶ NR′O)3 [where,Ln=La(III), Pr(III) or Nd(III); R=CH3 or H and R′=CH2?CH2 or CH2CHCH3] in dry benzene. The labile nature of the isopropoxy groups in the 1∶1 derivatives has been shown by exchange reactions with an excess oft-butyl alcohol leading to the formation ofLn(O?t-C4H9)(OC6H4C[R]∶NR′O); (where R=CH3 and R′=CH2CHCH3) type derivatives in almost quantitative yield. The IR spectra of the resulting derivatives have been recorded in the range of 4000–400 cm?1, ν C=N frequency bands appear at ≈ 1620 cm?1 and almost no change has been noted in their positions on complexation. Some new peaks are, however, observed in the range of 700–600 cm?1 and these may be ascribed to the ring deformation coupled with both theLn?O stretching and C?CH3 stretching modes.  相似文献   

17.
Zirconium(IV)Schiff base derivatives have been synthesised by reacting zirconium isopropoxide with monofunctional bidentateSchiff bases in different stoichiometric ratios. The resulting derivatives of the type Zr(O-Isopr)3(SB) and Zr(O-Isopr)2(SB)2, whereSB is the anion of the correspondingSchiff baseSBH, have been isolated in almost quantitative yields. Their molecular weights have been determined ebullioscopically and their ir spectra recorded.
Zirkonium(IV)-Komplexe von Schiff-Basen
Zusammenfassung Es wurden Zirkonium(IV)-Schiff-Basen-Derivate in verschiedenen stöchiometrischen Zusammensetzungen über die Reaktion von Zirkoniumisopropoxid mit monofunktionellen zweizähnigenSchiff-Basen synthetisiert. Die Komplexe vom Typ Zr(O-Isopr)3(SB) und Zr(O-Isopr)2(SB)2 [SB als Anion derSchiff-BaseSBH] wurden in fast quantitativer Ausbeute erhalten. Es werden Strukturen vorgeschlagen, die auf ebullioskopisch bestimmten Molekulargewichten und den IR-Spektren basieren.
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18.
Zusammenfassung Es wurden Verbindungen der ZusammensetzungLnCl3 · 3 H2 Fox * (Ln=La, Ce, Pr, Nd, Sm, Eu) isoliert. Diese Verbindungen wurden näher mit Hilfe von Thermoanalyse, IR-Absorptionsspektren und Röntgenstreuung untersucht. Auf Grund der Molarleitfähigkeitsmessungen in Methanol handelt es sich um den Typ 11 – [Ln(H2 Fox)3Cl2]Cl – entsprechend der Koordinationszahl acht.
Compounds of rare earth elements with-furoinoxime
Compounds of the general compositionLnCl3 · 3 H2 Fox (Ln=La, Ce, Pr, Nd, Sm, Eu) were isolated. They were investigated by means of thermoanalysis, I.R. spectroscopy and X-ray diffraction. Molar conductivity measurements in methanol confirmed the 11 composition – [Ln(H2 Fox)3Cl2]Cl –corresponding to a coordination number eight.
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19.
New ternary metal borides with compositionR. E. T 4B4 (R. E.=rare earth metal,T=transition metal) have been synthesized within the systems [La,Ce,Pr,Nd,Sm]–Os–B and [Y, La, Ce, Pr, Nd, Sm, Gd, Tb]–Ir–B. All compounds were found to be crystallizing with NdCo4B4-type structure. Magnetic measurements (80–300 K,Curie-Weiss behaviour, p ~ 16K and µeff=9.94µB for TbIr4B4) indicate Y andR. E. elements (except Ce) to be trivalent in these compounds. The crystal chemistry of the isotypic series [Y,R. E.] [Os,Ir]4B4 is discussed.
Ternäre Metallboride. [La,Ce,Pr,Nd,Sm] Os4B4 und [Y,La,Ce,Pr,Nd,Sm,Gd,Tb] Ir4B4 mit NdCo4B4-Struktur
Zusammenfassung Es wurden neue Metallboride der ZusammensetzungR. E. T 4B4 (R. E.=Seltenerdmetall,T=Übergangsmetall) innerhalb der Systeme [La,Ce, Pr,Nd,Sm]–Os–B und [Y,La,Ce,Pr,Nd,Sm,Gd,Tb]–Ir–B hergestellt. Alle Verbindungen kristallisieren entsprechend dem NdCo4B4-Typ. Magnetische Messungen (80–300K,Curie-Weiss-Verhalten, p ~ 16K und µeff=9.94µB für TbIr4B4) zeigen an daß Y und dieR. E.-Elemente (ausgenommen Ce) in diesen Verbindungen trivalent sind. Die Kristallchemie der isotypen [Y,R. E.][Os,Ir]4B4-Verbindungen wird diskutiert.
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20.
Trans-[Cr(NH3)4F2]I·H2O (A) has monoclinic P2l/m (No. 11) space group witha=5.033 (3),b=16.333 (10),c=5.539 (3) Å and =98.47 (3)°,Z=2.Cis-[Cr(NH3)4F2]ClO4 (B) has tetragonal space group I4lmd (No. 109) witha=7.417 (1),c=16.610 (2) Å,Z=4. Cr–F and Cr–N bonding distances are 1.894 (3); 2.087 and 2.083 (5) Å for A and 1.887 (6); 2.062 (5) and 2.051 (7) Å for B. Octahedral angles within the cations are close to 90° for both compounds. Cr–N bondtrans to Cr–F bond in thecis compound is shorter. Structures were refined toR 2 values of 0.072 (A) and 0.058 (B).Trans-[Cr(NH3)4F2]I·H2O has weak N–H–F hydrogen bonds between the cations. None such interactions were found incis-[Cr(NH3)4F2]ClO4.
Fluorhältige Komplexe des Cr(III), 2. Mitt.: Kristall- und Molekülstruktur von trans-[Cr(NH3)4F2]I·H2O und cis-[Cr(NH3)4F2]ClO4
Zusammenfassung Trans-[Cr(NH3)4F2]I·H2O (A) kristallisiert in der Raumgruppe P2l/m (No. 11) mitZ=2 unda=5,033 (3),b=16,333 (10),c=5,539 (3) Å und =98,47 (3)°.Cis-[Cr(NH3)4F2]ClO4 (B) kristallisiert in der Raumgruppe I4lmd (No. 109) mitZ=4,a=7,417 (1) undc=16,610 (2) Å. Die Cr–F- und Cr–N-Abstände sind 1,894 (3); 2,087 (6), 2,083 (5) Å für A und 1,887 (6); 2,062 (5), 2,051 (7) Å für B. Die octaedrischen Bindungswinkel innerhalb der Kationen weichen nicht viel von 90° ab. Der Cr–N-Abstand intrans-Position der Cr–F-Bindung ist kürzer. Die Strukturen wurden bis zu GütefaktorenR 2 0,072 (A) und 0,058 (B) verfeinert. Bei der Verbindung A wurden schwache N–H ... F-Wasserstoff-Bindungen zwischen verschiedenen Kationen beobachtet, während bei der Verbindung B keine Wasserstoff-Bindungen vorhanden sind.
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