博碩士論文 106223030 完整後設資料紀錄

DC 欄位 語言
DC.contributor化學學系zh_TW
DC.creator林汶政zh_TW
DC.creatorWen-Zheng Linen_US
dc.date.accessioned2019-8-15T07:39:07Z
dc.date.available2019-8-15T07:39:07Z
dc.date.issued2019
dc.identifier.urihttp://ir.lib.ncu.edu.tw:88/thesis/view_etd.asp?URN=106223030
dc.contributor.department化學學系zh_TW
DC.description國立中央大學zh_TW
DC.descriptionNational Central Universityen_US
dc.description.abstract鈣鈦礦太陽能電池之光電轉換效率在近年已由4%大幅成長到23%,欲提升效率,研發一種更能有效提取電洞並傳遞電洞之電洞傳輸材料為重要關鍵之一。 本篇設計了以三聯噻吩(2,2′:5′,2"-terthiophene)為主體之電洞傳輸材料WZ40、WZ102、WZ103,藉由改變拉推電子基的強弱,觀察其對光電轉換效率的影響。WZ系列之材料皆展現出非晶態特性,且有合適的熱穩定性,其中WZ102在鈣鈦礦太陽能電池中的光電轉換效率可達11.91%,優於PEDOT:PSS的10.23%,是一款應用在鈣鈦礦太陽能電池上相當具有潛力之電洞傳輸材料。 zh_TW
dc.description.abstractThe power conversion efficiency(PCE)of perovskite solar cells(PSCs)has shown a significant enhancement from 3.8 % in 2009 to 23.7 % in 2018. To increase the PCE, developing a hole-transporting material(HTM)which has superior ability of positive charge extraction and transportation is one of the important factors. In this article, three terthiophene-based hole-transporting materials named WZ40, WZ102, WZ103 have been synthesized. The compounds of WZ series exhibit amorphous property and appropriate thermal stability. However, the perovskite solar cell employing WZ102 generates a power conversion efficiency of 11.91 %, which is higher than the power conversion efficiency of 10.23 % based on PEDOT:PSS. The better performance gives it potential as a promising HTM for the further advance of PSCs. en_US
DC.subject電洞傳輸材料zh_TW
DC.subject鈣鈦礦太陽能電池zh_TW
DC.subject三聯噻吩zh_TW
DC.subjectHole-Transporting Materialen_US
DC.subjectPerovskiteen_US
DC.subjectTerthiopheneen_US
DC.title研究與合成應用於太陽能電池之新穎三聯噻吩類型電洞傳輸材料zh_TW
dc.language.isozh-TWzh-TW
DC.titleSynthesis and Study of Novel Terthiophene-Based Hole-Transporting Materials Applying to Solar Cellsen_US
DC.type博碩士論文zh_TW
DC.typethesisen_US
DC.publisherNational Central Universityen_US

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