Surfaces of Solid Materials: Reactivity and Structure - M105007
Title: Reaktivita a struktura povrchu pevných látek
Guaranteed by: Department of Inorganic Technology (105)
Faculty: Faculty of Chemical Technology
Actual: from 2019
Semester: winter
Points: winter s.:5
E-Credits: winter s.:5
Examination process: winter s.:
Hours per week, examination: winter s.:2/2, C+Ex [HT]
Capacity: unlimited / unlimited (unknown)
Min. number of students: unlimited
State of the course: taught
Language: Czech
Teaching methods: full-time
Teaching methods: full-time
Level:  
Note: course can be enrolled in outside the study plan
enabled for web enrollment
Guarantor: Lhotka Miloslav doc. Ing. Ph.D.
Hnát Jaromír doc. Ing. Ph.D.
Interchangeability : N105015
Examination dates   
This subject contains the following additional online materials
Annotation -
This course is designed to provide the fundamentals of fluid - solid surfaces phenomena, including detailed discussion of the experimental characterisation techniques used both for structural and chemical properties of solid surfaces. Adsorption, catalytic activation and flow phenomena in porous structures are discussed. Specific applications to catalytic engineering, electrochemistry, and material sciences are investigated.
Last update: Pátková Vlasta (04.01.2018)
Aim of the course -

Students will be able to:

Describe the basic phenomena occurring at the solid-liquid interface

Design optimal experimental method to characterize the structure and chemical composition of solid surfaces

Combine phenomena of adsorption, catalytic activation and transport in porous media with industrially important applications in catalysis, electrochemistry and material science.

Last update: Pátková Vlasta (04.01.2018)
Course completion requirements - Czech

K udělení zápočtu je nutné splnit zápočtový test nad 60% a vypracovat seminární práci v rozsahu nejméně 4 stran dle zadaného tématu.

Udělený zápočet je nutnou podmínkou pro skládání zkoušky. Zkouška je pouze ústní.

Last update: Lhotka Miloslav (15.02.2018)
Literature -

A:Morrison S.R.: The Chemical Physics of Surfaces, Plenum Press N.Y. 1977

A:Attard G., Barnes C.: Surfaces, Oxford University Press 1998

R:Lowell S., Shields J.E., Thomas M.A., Thommes M.:Characterization of Porous Solids and Powders:Surface Area, Pore Size and Density, Kluwer Academic Publishers,2004

Last update: Pátková Vlasta (04.01.2018)
Requirements to the exam - Czech

Požadavkem k udělení zápočtu je absolvování zápočtového testu se ziskem nejméně 60% možných bodů a vypracování semestrálního projektu na předem dané téma.

Zkouška má pouze ústní část.

Last update: Pátková Vlasta (04.01.2018)
Syllabus -

1. Surface characteristics of solids, classification of methods

2. Geometric and textural characteristics of solid surface

3. The thermodynamics of phase boundaries, adsorption isotherms

4. Size distribution of mesopores, adsorption method

5. Size distribution of micropores, adsorption method, immersion calorimetry

6. Mercury porosimetry, size distribution of macropores

7. Electron spectroscopy ESCA, principle, apparatus

8. Auger and some other electron spectroscopies

9. SIMS, electron microscopy and microprobe, examples of application

10. Surface structure, electron diffraction methods

11. Models of chemisorption on ionic crystals and semiconductors

12. Catalytic activation of simple molecules (N2,O2,H2,CO)

13. Mechanism of transport in porous materials, membrane processes

14. Catalytic processes in porous materials

Last update: Pátková Vlasta (04.01.2018)
Learning resources -

Applied Surface Science: http://www.sciencedirect.com/science/journal/01694332

Last update: Pátková Vlasta (04.01.2018)
Registration requirements -

Physical Chemistry

Last update: Pátková Vlasta (04.01.2018)
Teaching methods
Activity Credits Hours
Obhajoba individuálního projektu 0.5 14
Účast na přednáškách 1 28
Příprava na přednášky, semináře, laboratoře, exkurzi nebo praxi 1 28
Práce na individuálním projektu 0.5 14
Příprava na zkoušku a její absolvování 1 28
Účast na seminářích 1 28
5 / 5 140 / 140