因電腦科技及機械加工的高速發展,使得定量分析化學從傳統的重量分析法或體積分析法,進展到快速化、自動化的儀器分析。本課程將會介紹各種儀器的原理、結構及應用。課程中學生將學會各儀器的基本原理及化學研究的應用。本課程涵蓋基本的儀分理論介紹及儀器分析時所需的品管系統的要求。儀器介紹包括有TG, FTIR, CE, HPLC, GC, UV, Fluorescence, AA, Conductance meter、旋光儀及折射儀等。
The instrument analysis is developed fast due to the computer technique. The instrument analysis contributes the fast and automatic analysis method.  The students will understand the principles, structure and application of various instruments. This instrumental chemistry course covers the fundamental works and the quality control in instrumental chemistry. The instruments include TG, FTIR, CE, HPLC, GC, UV, Fluorescence, AA, Conductance meter, reflection and refraction meter.
課程目標:

1. 以最務實的教學方式讓修課學生能實際體認奈米科技在當今各科研層面的發展與應用,藉以讓修習學生能夠真正汲取奈米領域的實作經驗。
2. 使學生明瞭奈米複合材料之基礎學理與技術,並學習奈米結構特性與奈米複合材料製備及鑑定相關技術,以期學生能掌握並應用於相關的奈米複合材料技術研發。

課程概述:

奈米材料與化學學科的相互交叉與覆蓋的發展極其迅速。本課程主要為對奈米材料與結構和奈米相關技術之發展做一簡單之探討與介紹,以健全化學系學生的奈米基礎與知識,並讓學生對現今奈米科技的發展趨勢與狀況有一些了解。課程內容包含:奈米材料物理化學,奈米材料有機及高分子化學,奈米材料超量分子化學…等。

The development of chemistry of nanomaterials is very rapid right now. This course will provide basic concepts of nanomaterials, structure of nanoparticles, and the relevant development of nanotechnology. We hope this course will provide the basic theory of nanotechnology, which is necessary for further relevant chemical courses. Key topics include nanomaterials of physical chemistry, nanomaterials of organic/polymer chemistry, and nanomaterials of supermolecular chemistry...etc.