2023 Photochemical Reactions II

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Academic unit or major
Graduate major in Chemistry
Instructor(s)
Ishitani Osamu 
Class Format
Lecture    (Face-to-face)
Media-enhanced courses
Day/Period(Room No.)
Thr7-8(W9-322(W931))  
Group
-
Course number
CHM.B437
Credits
1
Academic year
2023
Offered quarter
4Q
Syllabus updated
2023/3/20
Lecture notes updated
-
Language used
English
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Course description and aims

This is an advanced cause of photochemical reactions. The students are required basic knowledge of photochemistry. Photochemistry, photochemical reactions, and photocatalysis of metal complexes are mainly lectured.

Student learning outcomes

The students should learn high level of knowledge of photochemistry, photochemical reactions, and photocatalysis of metal complexes.

Keywords

photochemistry, photochemical reactions, photocatalysis, metal complex

Competencies that will be developed

Specialist skills Intercultural skills Communication skills Critical thinking skills Practical and/or problem-solving skills

Class flow

The teacher give lectures by using prints which are distributed in the class and a whiteboard. Questions from students are welcome in the class. The teacher gives many questions to the students. The students are requested to review.

Course schedule/Required learning

  Course schedule Required learning
Class 1 basic photochemistry review of basic knowledges on photochemistry
Class 2 photophysical processes color of molecules, electronic transition, emission, lifetime of excited states
Class 3 excited states and photochemical reactions of metal complexes 1 MC transition, LC transition, CT transition、photochemical ligand substitution, atom abstraction
Class 4 excited states and photochemical reactions of metal complexes 2 energy transfer, electron transfer
Class 5 metal-complex photocatalysts 1 quenching process, electron transfer, redox photosensitized reactions
Class 6 metal-complex photocatalysts 2 atom transfer, hydride transfer
Class 7 New photofunctional molecules upconversion, thermally activated delayed fluorescence (TADF)
Class 8 examination Your basic knowledges will be examined.

Out-of-Class Study Time (Preparation and Review)

To enhance effective learning, students are encouraged to spend approximately 30 minutes preparing for class and another 100 minutes reviewing class content afterwards (including assignments) for each class.
They should do so by referring to textbooks and other course material.

Textbook(s)

Handouts (TOKYO TECH OCW/OCW-i )

Reference books, course materials, etc.

Photochemistry of metal complexes, Yoichi Sasaki, Osamu Ishitani, Sankyo-suppan

Assessment criteria and methods

Examination only.

Related courses

  • CHM.B332 : Photochemistry
  • CHM.B436 : Photochemical Reactions I

Prerequisites (i.e., required knowledge, skills, courses, etc.)

Students who wish attend this class should have basic knowledge of photochemistry. One of the classes, CHM.B332 or CHM.B436 are strongly recommended to attend before attending this class.

Contact information (e-mail and phone)    Notice : Please replace from "[at]" to "@"(half-width character).

Osamu Ishitani ishitani[at]chem.titech.ac.jp
Notice : Please replace from "[at]" to "[at]"(half-width character).

Office hours

Contact by e-mail in advance to schedule an appointment.

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