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Ionic Liquids

General data

Course ID: 1200-2MON21L
Erasmus code / ISCED: 13.3 Kod klasyfikacyjny przedmiotu składa się z trzech do pięciu cyfr, przy czym trzy pierwsze oznaczają klasyfikację dziedziny wg. Listy kodów dziedzin obowiązującej w programie Socrates/Erasmus, czwarta (dotąd na ogół 0) – ewentualne uszczegółowienie informacji o dyscyplinie, piąta – stopień zaawansowania przedmiotu ustalony na podstawie roku studiów, dla którego przedmiot jest przeznaczony. / (0531) Chemistry The ISCED (International Standard Classification of Education) code has been designed by UNESCO.
Course title: Ionic Liquids
Name in Polish: Ciecze jonowe
Organizational unit: Faculty of Chemistry
Course groups: (in Polish) Przedmioty do wyboru w semestrze 3M (S2-PRK-CHM)
(in Polish) Wykłady monograficzne (S2-CH, S2-CHS)
(in Polish) Wykłady monograficzne w semestrze letnim (S2-CH, S2-CHS)
ECTS credit allocation (and other scores): 1.50 Basic information on ECTS credits allocation principles:
  • the annual hourly workload of the student’s work required to achieve the expected learning outcomes for a given stage is 1500-1800h, corresponding to 60 ECTS;
  • the student’s weekly hourly workload is 45 h;
  • 1 ECTS point corresponds to 25-30 hours of student work needed to achieve the assumed learning outcomes;
  • weekly student workload necessary to achieve the assumed learning outcomes allows to obtain 1.5 ECTS;
  • work required to pass the course, which has been assigned 3 ECTS, constitutes 10% of the semester student load.
Language: Polish
Main fields of studies for MISMaP:

biotechnology
chemistry
environmental protection
physics

Type of course:

elective monographs

Prerequisites (description):

It is assumed that the student has a basic knowledge of general chemistry, organic chemistry and physical chemistry.



Mode:

Classroom

Short description:

The student should obtain a basic knowledge of chemistry of ionic liquids.

Full description:

Structure, methods of synthesis and properties of ionic liquids will be discussed. Studies of physicochemical properties of ionic liquid solutions (miscibility with water and organic solvents, viscosity, excess molar volume and others). Examples of current practical application of ionic liquids in chemistry (organic synthesis), biotechnology, chemical engineering, electrochemistry.

Bibliography:

1. P.Wasserscheid, T.Welton (Eds), Ionic Liquids In Synthesis, Wiley-VCh, Weinheim 2003

2. R. D.Rogers, K.R.Seddon (Eds), Ionic Liquids: Fundamentals, Progress, Challenges and Opportunities, ACS , Washington DC, 2005

Learning outcomes:

After the lecture student;

KNOWLEDGE

- defines the ionic liquids

- discusses the method of obtaining imidazolium ionic liquids

- describes the properties of ionic liquids

- lists the practical applications of ionic liquids

SKILLS

- clarifies the relationship between the structure of ions and

midazolium ionic liquids’ physicochemical properties

- examines the dependence of structure of the cation and anion of

ionic liquids on miscibility with polar and a non-polar solvents

ATTITUDES

- understands the need to explore new eco-solutions in chemistry

and technology

- appreciates the impact of impurities in the compounds on their

physicochemical properties

Assessment methods and assessment criteria:

Credit with a grade. Attendance at the lecture is not a condition for obtaining a positive grade but it can affect a final grade.

Practical placement:

there is no apprenticeship

Classes in period "Summer semester 2023/24" (in progress)

Time span: 2024-02-19 - 2024-06-16
Selected timetable range:
Navigate to timetable
Type of class:
Monographic lecture, 15 hours, 30 places more information
Coordinators: Anna Makowska
Group instructors: Anna Makowska
Students list: (inaccessible to you)
Examination: Grading
Course descriptions are protected by copyright.
Copyright by University of Warsaw.
Krakowskie Przedmieście 26/28
00-927 Warszawa
tel: +48 22 55 20 000 https://uw.edu.pl/
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