請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/42782完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 邱勝賢 | |
| dc.contributor.author | Pei-Nung Chen | en |
| dc.contributor.author | 陳培儂 | zh_TW |
| dc.date.accessioned | 2021-06-15T01:23:17Z | - |
| dc.date.available | 2014-07-28 | |
| dc.date.copyright | 2009-07-28 | |
| dc.date.issued | 2009 | |
| dc.date.submitted | 2009-07-24 | |
| dc.identifier.citation | 1. (a) Jager, R.; Vogtle, F. Angew. Chem., Int. Ed. Engl., 1997, 36, 930–944. (b) Nepogodiev, S. A.; Stoddart, J. F. Chem. Rev., 1998, 98, 1959–1976. (c) Brouwer, A. M.; Fazio, S. M.; Frochot, C.; Gatti, F. G.; Leigh, D. A.; Wong, J. K. Y.; Wurpel, G. W. H. Pure Appl. Chem., 2003, 75, 1055–1060. (d) Chambron, J.-C.; Collin, J.-P.; Heitz, V.; Jouvenot, D.; Kern, J.-M.; Mobian, P.; Pomeranc, D.; Sauvage, J.-P. Eur. J. Org. Chem., 2004, 8, 1627–1638. (e) Kihara, N.; Hashimoto, M.; Takata, T. Org. Lett., 2004, 6, 1693–1696.
2. Amabilino, D. B.; Fraser Stoddart, J. F. Chem. Rev., 1995, 95, 2725–2828 3. Wasserman, E. J. Am. Chem. Soc., 1960, 82, 4433–4434. 4. Harrison, I. T.; Harrison, S. J. Am. Chem. Soc., 1967, 89, 5723–5724. 5. (a) Hubin, T. J.; Kolchinski, A. G.; Vance, A. L.; Busch, D. H. Template Control of Supramolecular Architectures. In Advances in Supramolecular Chemistry; Board 5, Series 237; JAI Press: 1999. (b) Diederich, F.; Stang, P. J. Template Directed Synthesis; Wiley- VCH: Weinheim, 2000. 6. Chiu, C.-W.; Lai, C.-C.; Chiu, S.-H. J. Am. Chem. Soc., 2007, 129, 3500–3501. 7. (a) Lehn, J. M. Angew. Chem. Int. Ed. Engl., 1988, 27, 89–112. (b) Cram, D. J. Angew. Chem. Int. Ed. Engl., 1988, 27, 1009–1020. (c) Pedersen, C. J. Angew. Chem. Int. Ed. Engl., 1988, 27, 1021–1027. 8. (a) Pedersen, C. J. J. Am. Chem. Soc. 1967, 89, 7017–7036. (b) Pedersen, C. J. J. Am. Chem. Soc., 1967, 89, 2495–2496. 9. Supramolecular Chemistry; Steed, J. W., Atwood, J. L., Eds.; John Wiley & Sons: New York, 2002. 10. (a) Ashton, P. R.; Campbell, P. J.; Chrystal, E. J. T.; Glink, P. T.; Menzer, S.; Philp, D.; Spencer, N.; Stoddart, J. F.; Tasker, P. A.; Williams, D. J. Angew. Chem. Int. Ed. Engl., 1995, 34, 1865–1869. (b) Kolchinski, A. G.; Busch, D. H.; Alcock, N. W. J. Chem. Soc., Chem. Commun., 1995, 1289–1291. 11. Ashton, P. R.; Baxter, I.; Fyfe, M. C. T.; Raymo, F. M.; Spencer, N.; Stoddart, J. F.; White, A. J. P.; Williams, D. J. J. Am. Chem. Soc., 1998, 120, 2297–2307. 12. (a) Kolchinski, A. G.; Alcock, N. W.; Roesner, R. A.; Busch, D. H. Chem. Commun., 1998, 1437–1438. (b) Rowan, S. J.; Stoddart, J. F. J. Am. Chem. Soc., 2000, 122, 164–165. (c) Rowan, S. J.; Cantrill, S. J.; Stoddart, J. F.; White, A. J. P.; Williams, D. J. Org. Lett., 2000, 2, 759–762. (d) Badjic, J. D.; Balzani, V.; Credi, A.; Silvi, S.; Stoddart, J. F. Science, 2004, 303, 1845–1849. 13. Ashton, P.; Glink, P. T.; Stoddart, J. F.; Tasker, P. A.; White, A. J. P.; Williams, D. J. Chem. Eur. J., 1996, 2, 729–736. 14. Rowan, S. J.; Cantrill, S. J.; Cousins, G. R. L.; Sanders, J. K. M.; Stoddart, J. F. Angew. Chem. Int. Ed., 2002, 41, 898–952. 15. Glink, P. T.; Oliva, A. I.; Stoddart, J. F.; White, A. J. P.; Williams, D. J. Angew. Chem. Int. Ed., 2001, 40, 1870–1875. 16. (a) Molecular Catenanes, Rotaxanes and Knots, Sauvage, J.-P.; Dietrich-Buchecker, C. O., eds., Wiley-VCH, Weinheim, 1999, ch. 11, pp. 277–321. (b) Takata, T.; Kihara, N.; Furusho, Y. Adv. Polym. Sci., 2004, 171, 1–76. 17. Wu, J.; Leung, K. C. F.; Stoddart, J. F. Proc. Natl. Acad. Sci. USA, 2007, 104, 17266–17271. 18. Kawasaki, H.; Kihara, N.; Furusho, Y.; Takata, T. Macromolecules, 2001, 34, 5449–5456. 19. Gong, C.; Gibson, H. W. J. Am. Chem. Soc. 1997, 119, 5862–5866. 20. Rowan, S. T.; Cantrill, S. J.; Stoddart, J. F.; White, A. J. P.; Williams, D. J. Org. Lett., 2000, 2, 759–762. 21. Kidd, T. J.; Loontjens, T. J. A.; Leigh, D. A.; Wong, J. K.Y. Angew. Chem. Int. Ed., 2003, 42, 3379–3383. 22. Hsueh, S. -Y.; Cheng, K. -W.; Lai, C. -C.; Chiu, S. -H. Angew. Chem. Int. Ed., 2008, 47, 4436–4439. 23. Hsu, C. -C.; Lai, C. -C.; Chiu, S. -H. Tetrahedron, 2009, 65, 2824–2829. 24. Hsu, C. -C.; Chen, N. -C.; Lai, C. -C.; Liu, Y. -H.; Peng, S. -M.; Chiu, S. -H. Angew. Chem. Int. Ed. 2008, 47, 7475–7478. 25. (a) Lehn, J. M. Science, 2002, 295, 2400–2403. (b) Wu, A.; Isaacs, L. J. Am. Chem. Soc. 2003, 125, 4831–4835. (c) Mukhopadhyay, P.; Wu, A.; Isaacs, L. J. Org. Chem. 2004, 69, 6157–6164. 26. Zhang, C.; Li, S.; Zhang, J.; Zhu, K.; Li, N.; Huang, F. Org. Lett., 2008, 4, 5553–5556. 27. Henrik, W. J.; Winkler, D. F.; Schalley, C. A. J. Am. Chem. Soc. 2008, 130, 13852–13853. 28. Thorand, S.; Krause, N. J. Org. Chem. 1998, 63, 8551–8553. 29. Sauer, J.; Heldmann, D. K.; Hetzenegger, J.; Krauthan, J.; Sichert, H.; Schuster, J. Eur. J. Org. Chem., 1998, 2885–2896. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/42782 | - |
| dc.description.abstract | 本實驗室先前發表了利用固態Diels-Alder反應來合成車輪烷,進一步的希望利用不同大環分子與分子辨識單元之間的鍵結強弱與尺寸,以及封鎖基團反應性的差異,透過自我編排的方式在固態條件下進行複雜車輪烷的合成。 | zh_TW |
| dc.description.abstract | The efficient synthesis of asymmetrical rotaxanes with different macrocycles and stoppers remains to be a challenged task in the field of supramolecular chemistry. Recently, we report a solvent-free stoppering approach, which allows the efficient interlocking of few macrocycles in the form of [2]rotaxanes. Combining the concept of self-sorting, we plan to construct an asymmetrical [3]rotaxane, in which two macrocycles in different sizes are interlocked efficiently by their corresponding stoppers through a simple solvent-free reaction. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-15T01:23:17Z (GMT). No. of bitstreams: 1 ntu-98-R96223144-1.pdf: 2176772 bytes, checksum: 028b1208478ac84b6c2842622a53fd9f (MD5) Previous issue date: 2009 | en |
| dc.description.tableofcontents | 目次
中文摘要 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ I 英文摘要 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ II 目次 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ III 流程 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ V 圖 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ VI 表 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ VII 第一章 緒論 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 1 1.1 內鎖型分子:車輪烷及環連體 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 1 1.1.1 定義 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 1 1.1.2 車輪烷分子的合成策略 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 2 1.2 冠醚(crown ether)與二級銨離子之辨識系統 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 5 1.2.1 冠醚的起源 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 5 1.2.2 Dibenzo-[24]crown-8 (DB24C8)/Dibenzylammonium cation (DBA+)之辨識 ∙∙∙ 6 1.2.3應用冠醚與二級銨離子之辨識系統合成車輪烷 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 7 1.3 聚車輪烷 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 11 第二章 結果與討論 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 15 2.1 研究動機 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 15 2.1.1 合成車輪烷的條件限制 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 15 2.1.2 利用固態方法合成車輪烷 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 16 2.1.3 固態條件下自我編排方式合成複雜車輪烷 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 17 2.2 桿狀分子的合成 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 20 2.3 初步實驗 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 21 2.4 固態Diels-Alder反應性研究 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 22 2.5 重新設計桿狀分子 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 27 第三章 結論 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 29 第四章 實驗部分 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 30 第五章 參考文獻 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 40 第六章 附錄 ∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙∙ 43 | |
| dc.language.iso | zh-TW | |
| dc.subject | 自我編排 | zh_TW |
| dc.subject | 車輪烷 | zh_TW |
| dc.subject | Self-sorting | en |
| dc.subject | Rotaxane | en |
| dc.title | 以自我編排方式合成複雜車輪烷 | zh_TW |
| dc.title | Rotaxane Synthesis Through Self-sorting Processes | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 97-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 徐秀福,賴建成 | |
| dc.subject.keyword | 車輪烷,自我編排, | zh_TW |
| dc.subject.keyword | Rotaxane,Self-sorting, | en |
| dc.relation.page | 72 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2009-07-24 | |
| dc.contributor.author-college | 理學院 | zh_TW |
| dc.contributor.author-dept | 化學研究所 | zh_TW |
| 顯示於系所單位: | 化學系 | |
文件中的檔案:
| 檔案 | 大小 | 格式 | |
|---|---|---|---|
| ntu-98-1.pdf 未授權公開取用 | 2.13 MB | Adobe PDF |
系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。
