《分析化学(下)》教学大纲(英文版).docx
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1、分析化学(下)教学大纲(英文版)-正文内容开始- Analytical Chemistry Part IICourse Syllabus Course Code:09041036 Course Category:Major Basic Majors:Chemistry Semester:Spring Total Hours:72 Hours Credit:3 Lecture Hours:72 Hours Textbooks: Douglas A. Skoog, F. James Holler, Stanley R. Crouch, Principles of Instrumental Anal
2、ysis, Cengage Learning, 2022, 6th edition References Douglas A. Skoog, Donald M. West, F. James Holler, Stanley R. CrouchFundamentals of Analytical ChemistryBrooks Cole; 8 edition (August 7, 2022) Gary D. Christian, Analytical Chemistry, Wiley; 6 edition (March 14, 2022) Robert Kellner, Jean-Michel
3、Mermet, Matthias Otto, Miguel Valcarcel, H. Michael Widmer Analytical Chemistry: A Modern Approach to Analytical Science, Wiley-VCH; 2 edition (October 8, 2022) David T. Harvey, Modern Analytical Chemistry, McDraw-Hill, 1999 1st edition Daniel C. Harris, Quantitative Chemical Analysis, W. H. Freeman
4、, 2022, 9th edition Teaching Aim Analytical chemistry is a discipline that studies and uses instruments and methods to separate, identify, and quantify matter. In practice separation, identification or quantification may constitute the entire analysis or be combined with another method. Separation i
5、solates analytes. Qualitative analysis identifies analytes, while quantitative analysis determines the numerical amount or concentration. Taking this course, the students will develop the basic concepts of quantity in chemistry, and will get a systematic knowledge on the four basic chemical equilibr
6、iums and their applications for analyses, such as for titrimetric and gravimetric analyses, working principles of typical analytical instruments, their applicability over different forms of species. Through this course and related training, the students could also develop the ability of resolving re
7、lated practical problems with suitable analytical strategies and technologies. Chapter 13 Introduction on chromatography 课时:2周,共6课时 Content 13.1 chromatographic methods and classification Teaching Outline: History and development; stationary phase and mobile phase; classification; 13.2 chromatogram
8、and Nomenclature Teaching Outline: Basic concepts, baseline, dead time, retention time, retention volume, adjusted values, peak width; information obtained from a chromatogram 13.3 basic principles for chromatography Teaching Outline: Distribution process and distribution constant; capacity factor/r
9、etention factor; selectivity factors; related retention value; basic retention equation; plate theory, plate number and plate height; rate theory; separation resolution; basic separation equation Problems 1. What do retention factor and selectivity factor mean in chromatography? 2. How to evaluate t
10、he theoretical plate number of a specific chromatographic column? 3. One stated that high theoretical plate number will lead to complete separation of a pair of species, is that correct? Try explain. Chapter 14 Gas Chromatography 课时:2周,共6课时 Content 14.1 Instrumentation of gas chromatography Teaching
11、 Outline: The construction, four subsystems: carrier gas, sample injection system, columns and temperature control system; temperature programming 14.2 detectors for gas chromatography Teaching Outline: ideal properties of a good detector; thermal conductivity detector; flame ionization detector; el
12、ectrode capture detector and flame photometery detector, their properties and applications 14.3 packed column gas chromatography Teaching Outline: Classification of stationary phase; Kovats constants; McReynolds constants; widely used stationary phases; bonded and cross-linked stationary phases; bas
13、ic principle for chiral separation; 14.4 open tubular chromatography Teaching Outline: The advantages and disadvantages of open tubular columns; classification of open tubular columns; wall-coated open tubular column and porous-layer open tubular column; comparison with packed columns 14.5 qualitati
14、ve and quantitative analysis Teaching Outline: Qualitative analysis, by retention value, GC-MS; quantitative analysis, peak area, internal standard; standard calibration curve 14.6 application of gas chromatography Teaching Outline: Some examples of the application Problems 1. Compare the advantages
15、 and disadvantages of different types of detectors in gas chromatography. 2. Why are open tubular columns so popular in gas chromatography as compared with packed ones? 3. What is a gas-solid chromatography? 4. How to evaluate the stationary phase of a gas-liquid chromatography? Chapter 15 High Perf
16、ormance Liquid Chromatography and Supercritical Fluidic Chromatography 课时:2周,共8课时 Content 15.1 mobile Teaching Outline: Effect of particle size of packing; requirement on mobile phases 15.2 instrumentation of liquid chromatography Teaching Outline: Construction of the instrument; commonly used detec
17、tors, ultraviolet detector, fluorescence detector, refractive index detector and electrochemical detector 15.3 liquid-solid chromatography Teaching Outline: The basic principles; commonly used stationary phase and mobile phase; 15.4 bonded-phase chromatography Teaching Outline: Preparations of bonde
18、d-phase columns; Normal- and reverse-phase packing, properties and applications; 15.5 ion-exchange chromatography Teaching Outline: Basic principle of ion-exchange chromatography; stationary phase and mobile phase; the instrumentation and the process; 15.6 size-exclusion chromatography Teaching Outl
19、ine: Basic principle of size-exclusion chromatography; gel filtration chromatography and gel permeation chromatography; the stationary and mobile phase; 15.7 supercritical fluid chromatography Teaching Outline: Basic principle of supercritical fluid chromatography; the instrumentation; stationary an
20、d mobile phases; commonly used detectors for SFC; applications Problems 1. Why are HPLCs advantageous over traditional low pressure liquid chromatography? 2. Compare the advantages and disadvantages of different types of detectors in HPLCs. 3. How does a size-exclusion chromatography work? 4. What i
21、s a reverse-phased liquid chromatography? Explain its popularity. 5. What is a supercritical fluid chromatography? Chapter 16 introduction on spectroscopy 课时:2周,共6课时 16.1 basic of electromagnetic radiation Teaching Outline: Wave properties of electromagnetic radiation; electromagnetic spectrum; quan
22、tum-mechanical properties of radiation and photoelectric effect; 16.2 interactions of matter and light Teaching Outline: Absorption, emission, scattering, refraction, reflection and diffraction; 16.3 Spectroscopic method Teaching Outline: Absorption and emission spectroscopy; instrumentation for spe
23、ctroscopy; source of radiation, continuum sources, line sources and laser sources; wave length selectors, filters, prism and grating monochromators, monochromator slits; radiation transducers; barrier-layer photovoltaic cells, vacuum phototubes, photomultiplier tubes; multichannel phototransducers,p
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