光譜與分子量測學
Biospectroscopy and Detection
| 節 | 週四 |
|---|---|
2 09:00–09:50 | 光譜與分子量測學 SC109(光復) 3 節連堂 |
3 10:10–11:00 | |
4 11:10–12:00 |
* 根據陽明交大上課時間表所列
課程概述與目標: 詳細概論光學光譜理論‚並介紹如何將這些理論運用於現代分子和細胞生物物理和生物化學◦ This course will provide fundamental concepts on optical spectroscopy, which is used to study the structure and function of biological macromolecules. This course aims to help students develop a physical understanding of daily-used instruments in biophysical and biochemistry laboratories.
先修科目或先備能力:基礎物理、基礎化學 (General physics and chemistry)
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5 homeworks (30%) one midterm and one final exam (70%, 35% each exam)
Basic concepts in quantum chemistry
1. From Classical to quantum mechanics 2. The Schrödinger equation 3. The quantum Mechanical Postulates 4. The particle in a box and real world 5. The Harmonic oscillator 6. Rigid rotator 7. The hydrogen atom 8. Many electron atoms 9. LCAO-MO
- 講授:
- 12
Light and Matters
1. Interaction of radiation with light 2. Einstein A and B coefficients 3. Absorption and emission of Radiation (Jabloński diagram) 4. The Frank-Condon Principle
- 講授:
- 3
The electronic states
1. LCAO-MO 2. UV-VIS absorption spectroscopy 3. Fluorescence spectroscopy 4. Applications
- 講授:
- 18
Microscopy
1. Basic light microscopy 2. Confocal microscopy 3. Multiphoton fluorescence microscopy 4. Optical sectioning microscopy 5. Superresolution
- 講授:
- 6
The vibrational states
1. Principles of infrared spectroscopy 2. Vibrational spectra of biopolymers 3. Raman spectroscopy
- 講授:
- 9
Homework recitations
Off-line web resource
- 講授:
- 6
| 週次 | 主題 |
|---|---|
| 第 1 週 | Course Introdunction From Classical to quantum mechanics |
| 第 2 週 | The Schrödinger equation The Quantum Mechanical Postulates |
| 第 3 週 | The particle in a box and the real world The Harmonic oscillator |
| 第 4 週 | Rigid rotator The hydrogen atom Many electron atoms LCAO-MO |
| 第 5 週 | Interaction of radiation with light Einstein A and B coefficients Absorption and emission of Radiation (Jabloński diagram) The Frank-Condon Principle Absorption spectroscopy |
| 第 6 週 | UV-VIS Absorption spectroscopy Transition dipole moment Light-dependent Schrödinger equation Symmetry-allow and Symmetry-forbidden Beer-Lambert Law (empirical results and limitation) |
| 第 7 週 | UV-VIS Absorption spectroscopy (Application) Fundament instruments CD and ORD (protein secondary structures) |
| 第 8 週 | Fluorescence spectroscopy I Introduction to fluorescence Characteristics of fluorescence emission Fluorophores: Dye, biomolecules, and fluorescent protein |
| 第 9 週 | Midterm |
| 第 10 週 | Fluorescence spectroscopy II (Applicataion) Fluorescence lifetime Absorption spectroscopy Förster resonance energy transfer (FRET) Fluorescence sensing (Immunoassays….) |
| 第 11 週 | Fluorescence spectroscopy III (detection and imaging) Instrumentation Time-resolved measurements Fluorescence microscopy (FRAP, FLIM…) |
| 第 12 週 | Microscopy I Basic light microscopy Confocal microscopy Multiphoton fluorescence microscopy |
| 第 13 週 | Microscopy II Optical sectioning microscopy (TIRFM, LSFM…..) Superresolution (STED, SSIM, PALM, STORM….) |
| 第 14 週 | Principles of infrared spectroscopy Molecular symmetry Vibrational spectra of biopolymers |
| 第 15 週 | Spontaneous Raman Resonance Raman Raman spectroscopy and imaging Microscopy (CARS, SRS) |
| 第 16 週 | Final exam |
Peter Atkins, Physcial chemistry, 121th Ed. 以下為參考書目: • Joseph. R. Lakowicz, Principles of fluorescence spectroscopy, 3rd Ed., 2006 • Thomas Engel, Quantum chemistry and spectroscopy, 3rd Ed., 2012
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