博碩士論文 943204014 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:16 、訪客IP:3.145.206.178
姓名 陳韻婷(Yun-ting Chen)  查詢紙本館藏   畢業系所 化學工程與材料工程學系
論文名稱 製備次微米級均一粒徑之染料球
(Preparation of sub-micro-monodisperse dye-doped polystyrene)
相關論文
★ 快速合成具核殼結構之均ㄧ粒徑次微米球與其表面改質之特性研究★ 高效率染料敏化太陽能電池及製備次模組元件之研究
★ 利用核殼結構次微米球建構具耐溶劑性質及機械性質之光子晶體膜★ 利用次微米球建構具機械性質之光子晶體薄膜
★ 電漿高分子聚合膜對二氧化碳及甲烷氣體之分離性研究★ 同時聚合下製備聚苯乙烯/矽膠高分子混成體
★ 甲基丙烯酸酯系列團聯共聚物為界面活性劑之迷你乳化聚合研究★ 含水溶性藥物之乙基纖維素微膠囊的製備
★ 銅箔基板環氧樹脂含浸液之研究★ 含光敏感單體之甲基丙烯酸酯系列正型光阻之製備
★ 溶膠-凝膠法製備聚甲基丙烯酸甲酯 / 二氧化矽混成體之研究★ 均一粒徑無乳化劑次微米粒子之合成及種子溶脹製備均一粒徑微米級之緻密或交聯結構粒子
★ 溶膠-凝膠法製備環氧樹脂/二氧化矽有機無機混成體★ 溶膠-凝膠法製備相轉移材料微膠囊
★ 親疏水性光阻製備★ 奈米多孔性材料之製備
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   [檢視]  [下載]
  1. 本電子論文使用權限為同意立即開放。
  2. 已達開放權限電子全文僅授權使用者為學術研究之目的,進行個人非營利性質之檢索、閱讀、列印。
  3. 請遵守中華民國著作權法之相關規定,切勿任意重製、散佈、改作、轉貼、播送,以免觸法。

摘要(中) 研究中首先以無乳化劑之乳化聚合合成出粒徑範圍為80nm至600nm不同粒徑的聚苯乙烯顆粒,並添加染料於聚苯乙烯顆粒,製備含染料之聚苯乙烯顆粒,實驗所得之樣品以掃瞄式電子顯微鏡(SEM)觀察顆粒狀態,以動態粒徑分析儀(DLS)量測粒徑,以紫外光-可見光光譜儀分析(UV-VIS)其性質。
實驗結果顯示,188nm、210nm及280nm的聚苯乙烯顆粒,經高溫自組裝排列後,在UV-VIS光譜上,可分別在450.7nm、508.0nm及683.0nm得到一反射峰。而添加了黑色染料所製備出之均一粒徑的含染料聚苯乙烯顆粒(DDPM),在自組裝排列完成後,也會產生本身粒徑對映的結構性色彩,且顏色有變鮮明的狀態。
另外,研究中以溶劑導入和共聚合之溶脹兩種不同的方式添加染料於聚苯乙烯顆粒,發現到以溶劑導入染料的方式,粒徑較易控制,均一度也較佳,並且粒徑之Cv(%)值小於3%。不過以結構上來說,共聚合之溶脹方式可以得到含有交聯性質的聚苯乙烯染料顆粒。
摘要(英) In this work, various sizes of monodisperse polystyrene particles (10 wt%,80~600nm) were prepared in the presence of sodium, p-styrenesulfonate (NaSS, 2.0~0wt% based on styrene) and styrene. Then, the dye-containing polymer beads were prepared by introducing the different concentration of dye and solvent or styrene and divinylbenzen in polystyrene particle latex, respectively. The characteristics of self-assemble PS microspheres were observed by SEM, DLS, and ultraviolet-visible spectrophotometer. The results showed that with increasing the concentration of NaSS, the size of polystyrene was
decreased from 600nm to 80 nm.
Highly monodisperse dye-containing polymer beads were prepared by introducing dye and solvent when the dye concentration was lower than 1.0wt% (based on polymer) and by introducing dye and monomers when the dye concentration was lower than 0.05wt% (based on polymer), respectively. But the particle diameter with crosslinked structure was increased to 1.3 times when dye-containing polymer beads prepared by
introducing dye and monomers.
The wavelength of peaks in the reflective spectrum on the set of (111) planes in the face-centered cubic package of self-assembled dye-containing polymer beads with 188, 210, and 280 nm diameters were 450.7, 508.0, and 683.0 nm, respectively. In addition, the more vivid blue, green and red colors were observed when the more dye in those dye-containing polymer beads, respectively. These phenomena were also observed by SEM and photo image of above dye-containing polymer
beads.
關鍵字(中) ★ 均一粒徑
★ 染料
★ 苯乙烯
關鍵字(英) ★ polystyrene
★ monodisperse
★ dye
論文目次 目 錄
中文摘要 I
英文摘要 II
目錄 Ⅲ
表索引 V
圖索引 Ⅵ
第一章 前言 1
1-1 均一粒徑顆粒合成之介紹及文獻回顧 2
1-2 光子晶體之介紹及文獻回顧 7
1-3 染料填充之介紹及文獻回顧 17
1-4 實驗動機及目的 20
第二章 實驗藥品、儀器及實驗方法 21
2-1 實驗藥品 22
2-2 實驗儀器 23
2-3 實驗方法 24
2-3-1 PS種子粒子之合成 24
2-3-2 以溶劑導入法導入染料 24
2-3-3 以共聚合之溶脹導入法導入染料 24
2-4 性質測試 27
2-4-1 掃瞄式電子顯微鏡分析(SEM) 27
2-4-2 動態粒徑分析儀(DLS) 27
2-4-3 紫外光-可見光光譜儀(UV-VIS) 27
第三章 結果與討論 28
3-1 NaSS濃度對顆粒大小及表面狀態之探討 29
3-1-1 NaSS濃度對顆粒大小及表面狀態之探討 30
3-1-2 DLS測試結果 30
3-2 溶劑導入法之黑色染料球研究 37
3-2-1 黑色染料球之製備與外觀 39
3-2-2 顆粒尺寸改變量之探討 50
3-2-3 UV-VIS測試PS含染料乳液 58
3-2-4 UV-VIS測試光子晶體 61
3-3 共聚合之溶脹法導入之黑色染料球研究 79
3-3-1 以SEM觀察顆粒狀態及外觀變化 79
3-3-2 DLS測試粒徑變化 80
3-3-3 UV-VIS測試共聚合之溶脹法所製作之染料顆粒 89
3-3-4 UV-VIS測試共聚合之溶脹法所製作之染料顆粒之固態
薄膜 92
第四章 結論 94
參考文獻 96
參考文獻 1. J. L. Ou, J. K. Yang, H. Chen, European Polymer Journa. 2001, 37, 789-799.
2. 楊嘉崑 ”均一粒徑聚苯乙烯微粒子之合成研究” 國立中央大學化學工程學系碩士論文(1997)
3. 呂誌原 ”溶脹法製備微米級均一粒徑高分子微粒子之研究” 國立中央大學化學工程學系碩士論文(1998)
4. 歐進祿 ”均一粒徑無乳化劑次微米粒子之合成及種子溶脹製備均一粒徑微米級之緻密或交聯結構粒子” 國立中央大學化學工程學系博士論文(2000)
5. T.R. Aslamazova, Progress in Organic Coatings, 1995, 25, 109-167.
6. X.J. Xu, K.S. Siow, M. K. Wong, L.M. Gan, J. Polym. Sci. Part A: Polym Chem. 2001, 39, 1634-1645.
7. J. Xu, P. Li, C. Wu, J. Polym. Sci. Part A: Polym Chem..1999, 37, 2069-2074.
8. S.Gu, H.Akama, D.Nagao, Y. Kobayashi, M.Konno, Langmuir, 2004, 20, 7948-7951.
9. S. Gu, S. Inukai, M. Konno, J. Chem. Eng. Jpn, 2002, 35, 977.
10. S. Gu, S. Inukai, M. Konno, J. Chem. Eng. Jpn, 2003, 36, 1231.
11. N. S. Sanjani, M.S. Dehghan, N. Naderi, A. Ranji, J. Appl. Polym. Sci, 2004, 94, 1898-1904.
12. D. Nagao, N. Anzai, Y. Kobayashi, S. Gu, M. Konno, J. Colloid Interface Sci, 2006, 298, 232-237.
13. D. Zou, L. Sun, J. J. Aklonis, R. Salovey, J. Polym. Sci. Part A: Polym Chem, 1992, 30, 1463-1475.
14. S. E. Shim, Y. J. Cha, J. M. Byun, S. Choe, J. Appl. Polym. Sci, 1999, 71, 2259-2269.
15. J. W. Kim, K. D. Suh, Polymer, 2000, 41, 6181-6188.
16. K. Kang, C. Kan, Y. Du, D. Liu, J. Colloid Interface Sci, 2006, 297, 505-512.
17. F. Bai, X. Yang, W. Huang, J. Appl. Polym. Sci, 2006, 100, 1776-1784.
18. U. Jeong, Y. Wang, M. Ibisate, Y. Xia, Adv. Func. Mater, 2005, 15, 1907-1921.
19. Y. Xia, B. Gates, Z. Y. Li, Adv. Mater, 2000, 12, 693-713.
20. Y. Xia, B. Gates, Z. Y. Li, Adv. Mater, 2001, 13, 409-413.
21. 鐘儀文 ”以膠體製程製備光子晶體及其性質之探討” 國立成功大學材料科學及工程學系博士論文(2006)
22. P. Ni, P. Dong, B. Cheng, X. Li, D. Zhang, Adv. Mater, 2001, 13, 437-441.
23. B. H. Juarze, E. P. Lidon, E. C. Martinez, Photonic Crystal Materials and Nanostructures, 2004, 5450, 14-22.
24. S. Kinoshita, S. Yoshioka, Chem. Phys. Chem, 2005, 6, 1442 – 1459.
25. P. Jiang, J. F. Bertone, K. S. Hwang, V. L. Colvin, Chem. Mater,
1999, 11,2132-2140.
26. L. V. Woodcock, Nature, 1997, 388, 235.
27. L. V. Woodcock, Nature, 1997, 385, 141.
28. H. Mıguez, F. Meseguer, C. Lopez, A. Mifsud, J. S. Moya, L. Vazquez, Langmuir, 1997, 13, 6009-6011.
29. H. Wu, V. R. Thalladi, S. Whitesides, G. M. Whitesides, J. Am. Chem. Soc, 2002, 124, 14495-14502.
30. H. Cong, W. Cao, Langmuir, 2003, 19, 8177-8181.
31. G. N. Waterhouse, M. R. Waterland, Polyhedron, 2007, 26, 356-368.
32. Z. Z. Gu, S. Hayami, S. Kubo, Q. B. Meng, Y. Einaga, D. A. Tryk,
A. Fujishima, O. Sato, J. Am. Chem. Soc, 2001, 123, 175-176.
33. M. Muller, R. Zentel, T. Maka, S. G. Romanov, C. M. S. Torres, Chem. Mater, 2000, 12, 2508-2512.
34. Y.H. Ye, F. LeBlanc, A. Hache, V.V. Truong, Appl. Phys. Lett, 2001, 78, 52-54.
35. H. Miguez, F. Meseguer, C. Lopez, A. Blanco, J. S. Moya,
J. Requena, A. Mifsud, V. Fornes, Adv. Mater, 1998, 10, 480-483.
36. Z. Zhou, X. S. Zhao, Langmuir, 2005, 21, 4717-4723.
37. B. T. Holland, C. F. Blanford, T. Do, A. Stein, Chem. Mater, 1999, 11, 795-805
38. J. D. Joannopoulos, Nature, 2001, 414, 251.
39. S. H. Im, O. O. Park, Langmuir, 2002, 18, 9642-9646.
40. Y. L, S. W, J. W. Lee, N. A. Kotov, Chem. Mater, 2005, 17, 4918-4924
41. Z. Z. Gu, H. Uetsuka, K. Takahashi, R. Nakajima, H. Onishi, A. Fujishima, O. Sato, Angew. Chem. Int. Ed,. 2003, 42, 894-897.
42. H. Fudouzi, Photonic Crystals and Photonic Crystal Fibers for Sensing Applications, 2005, 6005, 600506-1~600506-9.
43. Z. Z. Gu, S. Kubo, A. Fujishima, O. Sato, Appl. Phys, 2002, 74, 127–129.
44. Y. Yin, Y. Lu, B. Gates, Y. Xia, J. Am. Chem. Soc, 2001, 123, 8718-8729.
45. 李世揚 “微米級單分怖聚苯乙烯螢光微珠” CHEMSTRY(THE CHINESE CHEM. SOC., TAIPEI), 2006, 64, 313-318.
46. R. Arshady, Biomalerials, 1993, 14, 5-15.
47. M. Bradley, M. Ashokkumar, F. Grieser, J. Am. Chem. Soc, 2003,125, 525-529.
48. M. Z. Yates, E. R. Birnbaum, T. M. McCleskey, Langmuir, 2000, 16, 4757-4760.
49. H. Liu, M. Z. Yates, Langmuir, 2002, 18, 6066-6070.
50. H. Ow, D. R. Larson, M. Srivastava, B. A. Baird, W. W. Webb,
U. Wiesner, Nano Latters, 2005, 5, 113-117.
51. T. Maka, S.G. Romanov, M. MuÈller, R. Zentel, C.M. Sotomayor Torres, Phys. Stat. Sol, 1999, 215, 307-312.
52. Y. Huang, Y. Zhou, S. T. Wu, Appl. Phys Lett, 2006, 88, 1-4.
53.. J.S. Song, F. Tronc, M. A. Winnik, Polymer, 2006, 47, 817-825.
54. D. G. Yu, J. H. An, J. Y. Bae, D. J. Jung, S. Kim, S. D. Ahn, S. Y. Kang, K. S. Suh, Chem. Mate, 2004, 16, 4693-4698.
55. M. H. J. Oh, D. J. Gentleman, G. D. Scholes, Phys. Chem. Chem. Phys, 2006, 8, 5079-5085.
56. C. S. Chern, T. J. Chen, Y. C. Liou, Polymer, 1998, 36, 3767-3777.
57. H. Hu, R. G. Larson, Langmuir, 2004, 20, 7436-7443.
58. F. Tronc, M. Li, J. LU, M. A. Winnik, B. L. Kaul, J. C. Graciet,
J. Polym. Sci. Part A: Polym Chem, 2003, 41, 766-778.
指導教授 陳暉(Hui Chen) 審核日期 2007-6-28
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明