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1、7512J.Org.Chem.1997,62,7512-7515NMRChemicalShiftsofCommonLaboratorySolventsasTraceImpuritiesHugoE.Gottlieb,VadimKotlyar,andAbrahamNudelmanDepartmentofChemistry,Bar-IlanUniversity,Ramat-Gan52900,IsraelReceivedJune27,1997InthecourseoftheroutineuseofNMRasanaidfororganicch
2、emistry,aday-to-dayproblemistheidentifica-tionofsignalsderivingfromcommoncontaminants(water,solvents,stabilizers,oils)inless-than-analyti-cally-puresamples.Thisdatamaybeavailableintheliterature,butthetimeinvolvedinsearchingforitmaybeconsiderable.Anotherissueistheconcen
3、trationdependenceofchemicalshifts(especially1H);resultsobtainedtwoorthreedecadesagousuallyrefertomuchFigure1.ChemicalshiftofHDOasafunctionoftempera-moreconcentratedsamples,andrunatlowermagneticture.fields,thantoday'spractice.Wethereforedecidedtocollect1Hand13Cchemicald
4、ependent(videinfra).Also,anypotentialhydrogen-shiftsofwhatare,inourexperience,themostpopularbondacceptorwilltendtoshiftthewatersignaldown-ªextrapeaksºinavarietyofcommonlyusedNMRfield;thisisparticularlytruefornonpolarsolvents.Insolvents,inthehopethatthiswillbeofassistan
5、cetocontrast,ine.g.DMSOthewaterisalreadystronglythepracticingchemist.hydrogen-bondedtothesolvent,andsoluteshaveonlyanegligibleeffectonitschemicalshift.ThisisalsotrueExperimentalSectionforD2O;thechemicalshiftoftheresidualHDOisveryNMRspectraweretakeninaBrukerDPX-300instr
6、umenttemperature-dependent(videinfra)but,maybecounter-(300.1and75.5MHzfor1Hand13C,respectively).Unlessintuitively,remarkablysolute(andpH)independent.otherwiseindicated,allwererunatroomtemperature(24(1Wethenadded3íLofoneofourstocksolutionsto°C).Fortheexperimentsinthelas
7、tsectionofthispaper,probetheNMRtube.ThechemicalshiftswerereadandaretemperaturesweremeasuredwithacalibratedEurotherm840/TpresentedinTable1.Exceptwhereindicated,thedigitalthermometer,connectedtoathermocouplewhichwascouplingconstants,andthereforethepeakshapes,areintroduce
8、dintoanNMRtubefilledwithmineraloiltoap-proximatelythesamelevelasatypicalsample.Ateachessentiallysolvent-independentan