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Characterization of electrophoretic separation systems,utilization of system peaks for determination of surfactant properties and optimalization of complex separation systems by the LFER model
Lokajová, Jana ; Tesařová, Eva (advisor) ; Coufal, Pavel (referee) ; Ševčík, Juraj (referee)
Conclusions o We have developď new method for CMC determination that is based on the measurementsof sysrem peaks eigenmobilities in capiiluy "t*o"oo"r*tr. The proposed method is moreprecise and eliminates specific systematic errors .o.*'n* when using some s*ndaťdmethods. The proposed method has U".n opti*i""a "o^ia,sysrcm peaks. ..Ý9 .r4. uE'tl UP.lmzeo considering intensities (amplitudes) of o The implementation of mice description ", ",".o".#'ÍÍ.',11Tffi :: jlTl.Ti#'ff ffiTr,"JT::,l:systems. Simulation prognrms curÍently allow user. to cď"ulate system eigenmobilities andeven to optimize the micellar separation systen. We h;\ *:ffi J:ffi.;: oÍ extended simulation o.o,*,",.u".il.;:T"T1'ffi ' ffill: We have clarified the mobi strength, which "uu,", .pri..ll,l?.jln.fi.r::ř""".J:"# peak due to the BGES ionic additional peak has "oo.a,.o in the electrophe.oror, ,oo**"r' As a consequence an :::::::::'*":u.'*..in.*oo.". identifi cation ", i"*,,.,"'ť"i:TT. *i:ajff:oeen possible using rhe set of different derecrion waveilil:" capirrary zone electrophoresis has been used to revear a structure and charge of nanoparticresin the recentry synthesized bulky porymer micelres ,n-'ltt".*, pH regions and to t3 characterize the effect of the PvP fraction added to PS.PMA on the final structure. ouÍ results have confirmed that...

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