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3115-68-2

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3115-68-2 Usage

Chemical Properties

Tetrabutylphosphonium bromide is WHITE TO CREAM CRYSTALLINE POWDER

Uses

Different sources of media describe the Uses of 3115-68-2 differently. You can refer to the following data:
1. Tetrabutylphosphonium bromide is a useful synthetic reagent used in proteomics research.
2. Tetra-n-butylphosphonium bromide is used as a phase-transfer catalyst at high temperatures, at which nitrogen analogues tend to undergo elimination e.g. as catalyst for the dealkoxycarbonylation of malonates and -keto esters by heating in stearic acid. used as an ionic liquid solvent in the regioselective O-alkylation of C/O ambident nucleophiles. It is a synthetic reagent used in proteomics research.
3. Tetrabutylphosphonium bromide (TBPB) is a quaternary salt which can be used:As a medium to disperse ruthenium catalyst for the synthesis of ethylene glycol from synthesis gas via ruthenium melt catalysis.As a catalyst supported on silica or alumina for the halogen exchange reaction to synthesize alkyl bromide from alkyl chloride.To synthesize various ionic liquids on mixing with different proportions of 1,3-dimethylurea for capturing NO gas.As a hydrogen-bond acceptor along with levulinic acid as a hydrogen-bond donor for the preparation of deep eutectic solvents to separate toluene from toluene/n-hexane mixtures.To prepare ionic semiclathrate hydrates.

Flammability and Explosibility

Nonflammable

Check Digit Verification of cas no

The CAS Registry Mumber 3115-68-2 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 3,1,1 and 5 respectively; the second part has 2 digits, 6 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 3115-68:
(6*3)+(5*1)+(4*1)+(3*5)+(2*6)+(1*8)=62
62 % 10 = 2
So 3115-68-2 is a valid CAS Registry Number.
InChI:InChI=1/C16H36P.BrH/c1-5-9-13-17(14-10-6-2,15-11-7-3)16-12-8-4;/h5-16H2,1-4H3;1H/q+1;/p-1

3115-68-2 Well-known Company Product Price

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  • TCI America

  • (T1124)  Tetrabutylphosphonium Bromide  >99.0%(T)

  • 3115-68-2

  • 25g

  • 290.00CNY

  • Detail
  • TCI America

  • (T1124)  Tetrabutylphosphonium Bromide  >99.0%(T)

  • 3115-68-2

  • 100g

  • 580.00CNY

  • Detail
  • TCI America

  • (T1124)  Tetrabutylphosphonium Bromide  >99.0%(T)

  • 3115-68-2

  • 500g

  • 1,990.00CNY

  • Detail
  • Alfa Aesar

  • (A10868)  Tetra-n-butylphosphonium bromide, 99%   

  • 3115-68-2

  • 25g

  • 203.0CNY

  • Detail
  • Alfa Aesar

  • (A10868)  Tetra-n-butylphosphonium bromide, 99%   

  • 3115-68-2

  • 100g

  • 434.0CNY

  • Detail
  • Alfa Aesar

  • (A10868)  Tetra-n-butylphosphonium bromide, 99%   

  • 3115-68-2

  • 500g

  • 1523.0CNY

  • Detail
  • Aldrich

  • (189138)  Tetrabutylphosphoniumbromide  98%

  • 3115-68-2

  • 189138-100G

  • 568.62CNY

  • Detail
  • Aldrich

  • (189138)  Tetrabutylphosphoniumbromide  98%

  • 3115-68-2

  • 189138-500G

  • 2,024.10CNY

  • Detail

3115-68-2SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 11, 2017

Revision Date: Aug 11, 2017

1.Identification

1.1 GHS Product identifier

Product name tetrabutylphosphanium,bromide

1.2 Other means of identification

Product number -
Other names tetrabutylphosphanium bromide

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:3115-68-2 SDS

3115-68-2Synthetic route

1-bromo-butane
109-65-9

1-bromo-butane

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

Conditions
ConditionsYield
With samarium(III) chloride; phosphorous In acetonitrile at 50℃; electrosynthesis;10%
1-bromo-butane
109-65-9

1-bromo-butane

n-butyl magnesium bromide
693-03-8

n-butyl magnesium bromide

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

Conditions
ConditionsYield
With P
1-bromo-butane
109-65-9

1-bromo-butane

tributylphosphine
998-40-3

tributylphosphine

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetrabutylphosphonium fluoride dihydrofluoride

tetrabutylphosphonium fluoride dihydrofluoride

Conditions
ConditionsYield
With potassium hydrogen bifluoride In dichloromethane for 0.5h; Ambient temperature;100%
tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetra-n-butylphosphonium tetrafluoroborate

tetra-n-butylphosphonium tetrafluoroborate

Conditions
ConditionsYield
With triethyloxonium fluoroborate In dichloromethane at 20℃; for 0.5h;100%
With trimethyl phosphite; tetrafluoroboric acid at 0 - 60℃; for 15h; Inert atmosphere; neat (no solvent);94%
With sodium tetrafluoroborate In water93%
With sodium tetrafluoroborate In dichloromethane at 120℃; for 24h; Inert atmosphere; Schlenk technique; Glovebox;90%
cis-dibromobis(trimethylphosphite-κP)platinum
31299-31-7, 77519-93-8

cis-dibromobis(trimethylphosphite-κP)platinum

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetrabutylphosphonium cis-dibromo(dimethylphosphonato)(trimethylphosphite)platinum(II)
1478658-04-6

tetrabutylphosphonium cis-dibromo(dimethylphosphonato)(trimethylphosphite)platinum(II)

Conditions
ConditionsYield
In acetonitrile at 70℃; for 2h;100%
2H(1+)*C6B2N6(2-)*2H2O

2H(1+)*C6B2N6(2-)*2H2O

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

2C16H36P(1+)*C6B2N6(2-)

2C16H36P(1+)*C6B2N6(2-)

Conditions
ConditionsYield
In water99%
sodium tetrafluoroborate
13755-29-8

sodium tetrafluoroborate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetra-n-butylphosphonium tetrafluoroborate

tetra-n-butylphosphonium tetrafluoroborate

Conditions
ConditionsYield
In pentan-1-ol98.6%
tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

phenyl chloroformate
1885-14-9

phenyl chloroformate

carbonic acid dimethyl ester
616-38-6

carbonic acid dimethyl ester

bis(phenyl) carbonate
102-09-0

bis(phenyl) carbonate

Conditions
ConditionsYield
98%
methyl phenyl carbonate
13509-27-8

methyl phenyl carbonate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

phenyl chloroformate
1885-14-9

phenyl chloroformate

bis(phenyl) carbonate
102-09-0

bis(phenyl) carbonate

Conditions
ConditionsYield
98%
potassium trifluoromethansulfonate
2926-27-4

potassium trifluoromethansulfonate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetra-n-butylphosphonium trifluoromethanesulfonate
126991-62-6

tetra-n-butylphosphonium trifluoromethanesulfonate

Conditions
ConditionsYield
In water98%
methyl phenyl carbonate
13509-27-8

methyl phenyl carbonate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

benzoyl chloride
98-88-4

benzoyl chloride

benzoic acid phenyl ester
93-99-2

benzoic acid phenyl ester

Conditions
ConditionsYield
97%
triphenyl(p-tolyl)borate potassium salt

triphenyl(p-tolyl)borate potassium salt

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetrabutylphosphonium triphenyl(p-tolyl)borate

tetrabutylphosphonium triphenyl(p-tolyl)borate

Conditions
ConditionsYield
In 1,2-dichloro-ethane for 1h;97%
methyl phenyl carbonate
13509-27-8

methyl phenyl carbonate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

chloroacetic acid ethyl ester
105-39-5

chloroacetic acid ethyl ester

phenoxyacetic acid ethyl ester
2555-49-9

phenoxyacetic acid ethyl ester

Conditions
ConditionsYield
96%
trifluorormethanesulfonic acid
1493-13-6

trifluorormethanesulfonic acid

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetra-n-butylphosphonium trifluoromethanesulfonate
126991-62-6

tetra-n-butylphosphonium trifluoromethanesulfonate

Conditions
ConditionsYield
With trimethyl phosphite at 0 - 60℃; for 15h; Inert atmosphere; neat (no solvent);96%
methyl (S)-2-(benzyloxycarbonlamino)-3-(p-toluenesulfonyl)propionate
1492-52-0

methyl (S)-2-(benzyloxycarbonlamino)-3-(p-toluenesulfonyl)propionate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

potassium carbonate
584-08-7

potassium carbonate

thiophenol
108-98-5

thiophenol

N-benzyloxycarbonyl-S-phenyl-L-cysteine methyl ester
153277-33-9

N-benzyloxycarbonyl-S-phenyl-L-cysteine methyl ester

Conditions
ConditionsYield
In water; toluene94.6%
2-bromo-N-(4-chlorophenyl)butanamide
90841-17-1

2-bromo-N-(4-chlorophenyl)butanamide

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

N-(4-chloro)phenyl-2-hydroxy butyramide
72468-65-6

N-(4-chloro)phenyl-2-hydroxy butyramide

Conditions
ConditionsYield
With sodium hydroxide; sodium formate In water; toluene94%
bis[bis(pentafluoroethyl)phosphinyl]imide
916079-45-3

bis[bis(pentafluoroethyl)phosphinyl]imide

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetra(n-butyl)phosphonium bis[bis(pentafluoroethyl)phosphinyl]azanide

tetra(n-butyl)phosphonium bis[bis(pentafluoroethyl)phosphinyl]azanide

Conditions
ConditionsYield
In water at 20℃;94%
In water at 20℃;86%
ethene
74-85-1

ethene

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

platinum(II) bromde

platinum(II) bromde

[nBu4P][PtBr3(C2H4)]
1184173-10-1

[nBu4P][PtBr3(C2H4)]

Conditions
ConditionsYield
In toluene at 150℃; under 18751.9 Torr; for 15h; Autoclave;94%
In toluene pptd. (Et2O);
sodium tungstate (VI) dihydrate
10213-10-2

sodium tungstate (VI) dihydrate

tetraoxo-μ-oxobis(pentamethylcyclopentadienyl)ditungsten(VI)

tetraoxo-μ-oxobis(pentamethylcyclopentadienyl)ditungsten(VI)

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

P(C4H9)4(1+)*(C5(CH3)5)W6O18(1-)=P(C4H9)4(C5(CH3)5)W6O18

P(C4H9)4(1+)*(C5(CH3)5)W6O18(1-)=P(C4H9)4(C5(CH3)5)W6O18

Conditions
ConditionsYield
With HNO3 In methanol; water byproducts: H2O; (C5(CH3)5)W2O5 in methanol was mixed with an aq. soln. of Na2WO4*2H2O, aq. HNO3 was added, stirring for 2 h, bromide salt in water was added; ppt. was filtered off, washed with small portions of water, methanol anddiethyl ether, dried under vac. at 70°C; elem. anal.;94%
propyl methanesulfonate
1912-31-8

propyl methanesulfonate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

A

propyl bromide
106-94-5

propyl bromide

B

tetrabutylphosphonium methanesulfonate
98342-59-7

tetrabutylphosphonium methanesulfonate

Conditions
ConditionsYield
In benzene at 80℃;A n/a
B 93%
tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

2-methylsulfanyl-6,7,8,9-tetrahydro-1,2,4-triazolo[5,1-b]quinazoline-5(10H)-one
124005-47-6

2-methylsulfanyl-6,7,8,9-tetrahydro-1,2,4-triazolo[5,1-b]quinazoline-5(10H)-one

2-methylthio-6,7,8,9-tetrahydro-1,2,4-triazolo[5,1-b]quinazolin-5(10H)-one tetrabutylphosphonium salt

2-methylthio-6,7,8,9-tetrahydro-1,2,4-triazolo[5,1-b]quinazolin-5(10H)-one tetrabutylphosphonium salt

Conditions
ConditionsYield
With sodium hydroxide In chloroform at 20℃; for 0.0833333h;93%
potassium hexabromoplatinate(IV)

potassium hexabromoplatinate(IV)

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetrabutylphosphonium hexabromoplatinate

tetrabutylphosphonium hexabromoplatinate

Conditions
ConditionsYield
In acetone93%
gold-colored oil

gold-colored oil

1-butanethiol
109-79-5

1-butanethiol

ethylphosphonothioic dichloride
993-43-1

ethylphosphonothioic dichloride

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

S-n-butyl ethylphosphonodithioic chloride
17162-58-2

S-n-butyl ethylphosphonodithioic chloride

Conditions
ConditionsYield
With sodium carbonate In diethyl ether92.5%
sodium molybdate dihydrate
7631-95-0

sodium molybdate dihydrate

tetraoxo-μ-oxobis(pentamethylcyclopentadienyl)dimolybdenum(VI)

tetraoxo-μ-oxobis(pentamethylcyclopentadienyl)dimolybdenum(VI)

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

P(C4H9)4(1+)*(C5(CH3)5)Mo6O18(1-)=P(C4H9)4(C5(CH3)5)Mo6O18

P(C4H9)4(1+)*(C5(CH3)5)Mo6O18(1-)=P(C4H9)4(C5(CH3)5)Mo6O18

Conditions
ConditionsYield
With HNO3 In methanol; water byproducts: H2O; (C5(CH3)5)Mo2O5 in methanol was mixed with an aq. soln. of Na2MoO4*2H2O,aq. HNO3 was added, stirring for 2 h, bromide salt in water was added; ppt. was filtered off, washed with small portions of water, methanol anddiethyl ether, dried under vac. at 70°C; elem. anal.;92%
silver(I) tungstate

silver(I) tungstate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

2C16H36P(1+)*O4W(2-)

2C16H36P(1+)*O4W(2-)

Conditions
ConditionsYield
In water for 0.166667h;92%
potassium tetracyanoborate

potassium tetracyanoborate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetra-n-butylphosphonium tetracyanidoborate
916730-42-2

tetra-n-butylphosphonium tetracyanidoborate

Conditions
ConditionsYield
In acetonitrile for 0.25h;91%
In acetonitrile byproducts: KBr; solns. of K(B(CN)4) (1.624 mmol) and P(C4H9)4Br mixed, stireed for 15 min; centrifuged, solvent evapd., ppt. washed (Et2O), dried at room temp. (under vac.), recrystd. from CH3CN; elem. anal.;91%
sodium metavanadate

sodium metavanadate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

[tris(tetrabutylphosphonium)] decavanadateH3

[tris(tetrabutylphosphonium)] decavanadateH3

Conditions
ConditionsYield
With nitric acid In water for 0.0833333h; pH=4.5;91%
silver(I) tetrakis(3,5-bis(trifluoromethyl)phenyl)borate
160298-76-0

silver(I) tetrakis(3,5-bis(trifluoromethyl)phenyl)borate

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

C16H36P(1+)*C32H12BF24(1-)

C16H36P(1+)*C32H12BF24(1-)

Conditions
ConditionsYield
In dichloromethane at 25℃; for 0.166667h; Darkness; Schlenk technique;91%
tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

tetrabutylphosphonium nitrate

tetrabutylphosphonium nitrate

Conditions
ConditionsYield
With trimethyl phosphite; nitric acid at 0 - 60℃; for 15h; Inert atmosphere; neat (no solvent);90%
tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

bis(trifluoromethane)sulfonimide lithium
90076-65-6

bis(trifluoromethane)sulfonimide lithium

tetrabutylphosphonium bis(trifluoromethanesulfonyl)amide

tetrabutylphosphonium bis(trifluoromethanesulfonyl)amide

Conditions
ConditionsYield
In dichloromethane at 120℃; for 24h; Inert atmosphere; Schlenk technique; Glovebox;90%
In water for 2h;
K[cis-PF2(CN)4]

K[cis-PF2(CN)4]

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

[(n-Bu4)P][cis-PF2(CN)4]

[(n-Bu4)P][cis-PF2(CN)4]

Conditions
ConditionsYield
In dichloromethane; water at 20℃; for 1h;90%
phosphoric acid O,O'-bis-(3-pentadecyl-phenyl) ester

phosphoric acid O,O'-bis-(3-pentadecyl-phenyl) ester

tetrabutyl phosphonium bromide
3115-68-2

tetrabutyl phosphonium bromide

C42H70O4P(1-)*C16H36P(1+)

C42H70O4P(1-)*C16H36P(1+)

Conditions
ConditionsYield
With potassium hydroxide In hexane; water at 20℃; for 6h;90%

3115-68-2Relevant academic research and scientific papers

Phosphonium-phosphates/thiophosphates: Ionic liquids or liquid ion pairs? NMR spectroscopic classification

Mondal, Sujit,Mandal, Tanmay,Sharma, Meeta,Kumar, Ravindra,Arora, Ajay K.,Bansal, Veena,Christopher,Kapur

, p. 2460 - 2464 (2017/06/01)

Structurally unique ionic liquids phosphonium-phosphate and phosphonium-thiophosphate, having both phosphorus based counter ions, in which the anionic part is represented by di-aryl phosphate or di-aryl thiophosphate and cations been tetraalkylphosphonium groups, behave differently in terms of their NMR behaviour. While phosphonium-phosphates show significant changes in its 1H, 13C and 31P NMR chemical shifts vis. á vis. corresponding chemical shifts for a physical mixture of tetraalkylphosphonium bromide and di-aryl phosphate, phosphonium-thiophosphates behave almost similarly in terms of NMR with their synthetic precursors, hence indicating phosphate-phosphonium interaction has a significant covalent component resembling more to a liquid ion pair while thiophosphate-phosphonium interaction is principally ionic in nature. Translational diffusion behavior studied by PFGSE-NMR experiments and ionic conductivities of these ionic liquids in chloroform solution corroborated the hypothesis. The effect of variable alkyl chain length in phosphonium cation is effectively observed in the extent of ion association. Results of this study may provide insight into the solution state behavior of these ionic liquids, would help to classify those in terms of their strength of ion association and thus potential application thereof.

Lamellar structures in fluorinated phosphonium ionic liquids: The roles of fluorination and chain length

Rauber, Daniel,Zhang, Peng,Huch, Volker,Kraus, Tobias,Hempelmann, Rolf

, p. 27251 - 27258 (2017/10/27)

Ionic liquids (ILs) exhibit tunable behaviour and properties that are due to their supramolecular structure. We synthesized a series of alkylated and fluorinated phosphonium dicyanamide ILs to study the relation between molecular structure and assembly with a focus on the roles of cation chain length and fluorination. Small angle X-ray scattering indicated a lamellar structure with long-range order for all fluorinated ILs, while alkylated ILs showed only the general structures of ILs, i.e., alternating a polar ionic-zone and a nonpolar alkyl-zone. "Fluorophobic" interactions caused microphase segregation between perfluorinated and other molecular segments, "fluorophilic" interactions among the perfluorinated segments stabilized the microphase structure, and the coupling of "fluorophobic" and "fluorophilic" interactions resulted in a stable mesophase structure. The perfluorinated segments packed more densely than the alkylated analogues; the fluorinated versions (except for F2) liquefied at temperatures considerably above that of alkylated ILs. The lamellar structures strongly affected the rheology of the ILs. Fluorinated ILs had higher viscosities and exhibited non-Newtonian shear thinning; the alkylated ILs of the same length had an order of magnitude lower viscosities and were purely Newtonian. We propose that the disruption of lamellar structure in the shear flow causes the non-Newtonian flow behaviour.

Coordination Catalysis in Organic Electrosynthesis. Electrochemical Phosphorylation of Organic Halides in the Presence of Samarium Dichloride

Budnikova,Yakhvarov,Kargin

, p. 566 - 569 (2007/10/03)

The feasibility was demonstrated for arylation (or alkylation) of white phosphorus under the action of electrochemically generated Sm(II).

Process for the preparation of substantially fluorinated alkyl bromides

-

, (2008/06/13)

According to the process according to the invention, substantially fluorinated alkyl bromides, preferably perfluoroalkyl bromides, are prepared by reaction of substantially fluorinated alkyl iodides, with phase transfer catalysts in the bromide form.

Process for the preparation of substantially fluorinated alkyl bromides

-

, (2008/06/13)

According to the process according to the invention, substantially fluorinated alkyl bromides, preferably perfluoroalkyl bromides, are prepared by reaction of substantially fluorinated alkyl iodides with organic bromine compounds in which the bromine atom is bound covalently to a carbon atom or a nitrogen atom.

Alcohols and aldehydes prepared from olefins and synthesis gas

-

, (2008/06/13)

This invention concerns a process of preparing alcohols and aldehydes which comprises the steps of contacting a mixture of terminal and/or internal olefins and synthesis gas with a catalyst system comprising a ruthenium-containing compound dispersed in a low melting quaternary phosphonium or ammonium base or salt and heating said resultant reaction mixture under a pressure of 100 psi or greater at a temperature of at least 50° C. for a sufficient time to produce said alcohols and aldehydes.

1H-NMR- AND MOESSBAUER INVESTIGATIONS ON THE ION PAIRS OF TETRACHLOROFERRATE(III) ANION WITH QUATERNARY PHOSPHONIUM CATIONS

Vincze, L.,Papp, S.

, p. 153 - 162 (2007/10/02)

Paramagnetic ion pairs were investigated by 1H-NMR and Moessbauer spectroscopy in chloroform and dimethyl sulphoxide.It has been shown that the chemical shifts of 1H-NMR peaks arise from a combination of contact and pseudocontact interactions of opposite sign, and the ratio of interactions was definitely influenced by the extent of solvation.On the basis of Moessbauer measurements it was shown that the change of the cation size had an effect on the electron delocalization and symmetry conditions of iron(III) in solid samples, too.In concentrated frozen solutions of ion pairs, different interactions were indicated by Moessbauer spectros copy in chloroform and dimethyl sulphoxide, in accordance with 1H-NMR results.However, in dilute solution such an anion-solvent interaction was observed directly, which could be shown by the NMR method only indirectly.

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