由於全球能源問題攸關著人類生活上之便利與品質,然而台灣又具有完整的半導體產業為基礎,並且,太陽電池產業亦將會是未來的重要能源科技之一,因此,本文之研究主要以半導體報廢晶圓為材料,經由製程條件的研究與分析結果,以提升半導體廠報廢晶圓之運用價值、並且也可以藉此節省製作太陽電池之材料成本,如此,在目前矽材料缺乏的情況下,亦能利用半導體報廢晶圓之再生功能而促進太陽電池產業未來之發展,使其發揮到極致之功用。
The issues on the global energies are closely related to convenience and quality of the human livings. The fact that Taiwan has a well-functioned semiconductor industry and that the solar cells industry will be one of the important technologies of resources in the future inspiring our present study to research on the rejected wafers. The research studies on the rejected wafers from semiconductor foundries and analyzing them via different processing conditions. The results of the analyses will hopefully upgrade the utilization of wafers produced from semiconductor foundries and ultimately cut the cost on producing material of solar cells. In this way, due to the shortage of the materials of silicon, the present research is to focus the recyclings of the rejected wafers produced from semiconductor foundries, which will in the long run promote the development of the industry of the solar cells.