[1]陈峰春,朱吉凯,金光日,等.两亲性超分子的自组装及应用[J].延边大学学报(自然科学版),2016,42(02):136-142.
 CHEN Fengchun,ZHU Jikai,JIN Guangri,et al.Self-assembly and application of supramolecular amphiphiles[J].Journal of Yanbian University,2016,42(02):136-142.
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两亲性超分子的自组装及应用

参考文献/References:

[1] 许良,李勇军,李玉良.基于π体系的超分子功能材料的制备与应用研究[J].化学进展,2014,26(4):487-501.
[2] 张希,王朝,王治强.超两亲分子:可控组装与解组装[J].中国科学:化学,2011,41(2):216-220.
[3] Rosen B M, Wilson C J, Wilson D A, et al. Dendron-mediated self-assembly, disassembly, and self-organization of complex systems[J]. Chemical Reviews, 2009,109(11):6275-6540.
[4] Hoeben F J, Jonkheijm P, Meijer E, et al. About supramolecular assemblies of π -conjugated systems[J]. Chemical Reviews, 2005,105(4):1491-1546.
[5] Schenning A P, Meijer E. Supramolecular electronics; nanowires from self-assembled π -conjugated systems[J]. Chemical Communications, 2005(26):3245-3258.
[6] George S J, Ajayaghosh A, Jonkheijm P, et al. Coiled-coil gel nanostructures of oligo(p-phenylenevinylene)s: gelation-induced helix transition in a higher-order supramolecular self-assembly of a rigid π - conjugated system[J]. Angewandte Chemie International Edition, 2004,43(26):3422-3425.
[7] Bilge A, Zen A, Forster M, et al. Swivel-cruciform oligothiophene dimers[J]. Journal of Materials Chemistry, 2006,16(31):3177-3182.
[8] 刘凯,王朝,李志波,等.基于定向电荷转移作用的超两亲分子[C]//中国化学会第28届学术年会摘要集.成都:中国化学会,2012.
[9] 陆美群.新型环糊精功能超分子的合成及性能研究[D].上海:华东理工大学,2012.
[10] 冯永嘉,温智廷,陈铁,等.刚柔嵌段共聚物在水溶液中的温度响应自组装[J].延边大学学报(自然科学版),2015,41(3):219-224.
[11] Yagai S, Nakajima T, Kishikawa K, et al. Hierarchical organization of photoresponsive hydrogen-bonded rosettes[J]. Journal of the American Chemical Society, 2005,127(31):11134-11139.
[12] Yagai S, Nakajima T, Karatsu T, et al. Phototriggered self-assembly of hydrogen-bonded rosette[J]. Journal of the American Chemical Society, 2004,126(37):11500-11508.
[13] Zhang B, Li Y, Liu R, et al. Extending the bandwidth of reverse saturable absorption in platinum complexes using two-photon-initiated excited-state absorption[J]. ACS Applied Materials & Interfaces, 2012,5(3):565-572.
[14] Lee S K, Yang W J, Choi J J, et al. 2,6-Bis
[4-(p-dihexylaminostyryl)styryl] anthracene derivatives with large two-photon cross sections[J]. Organic Letters, 2005,7(2):323-326.
[15] Bohle A, Brunklaus G, Hansen M R, et al. Hydrogen-bonded aggregates of oligoaramide-poly(ethylene glycol)block copolymers[J]. Macromolecules, 2010,43(11):4978-4985.
[16] Zhou Q H, Zheng J K, Shen Z, et al. Synthesis and hierarchical self-assembly of rod-rod block copolymers via click chemistry between mesogen-jacketed liquid crystalline polymers and helical polypeptides[J]. Macromolecules, 2010,43(13):5637-5646.
[17] Rahman M S, Samal S, Lee J S. Synthesis and self-assembly studies of amphiphilic poly(n-hexyl isocyanate)-block-poly(2-vinylpyridine)-block-poly(n-hexyl isocyanate)rod-coil-rod triblock copolymer[J]. Macromolecules, 2006,39(15):5009-5014.
[18] Yuan W, Zhang J, Wei J, et al. Synthesis and self-assembly of pH-responsive amphiphilic dendritic star-block terpolymer by the combination of ROP, ATRP and click chemistry[J]. European Polymer Journal, 2011,47(5):949-958.
[19] Hsin Y L, Lin C F, Liang Y C, et al. Microwave arcing induced formation and growth mechanisms of core/shell metal/carbon nanoparticles in organic solutions[J]. Advanced Functional Materials, 2008,18(14):2048-2056.
[20] Cosman N P, Fatih K, Roscoe S G. Electrochemical impedance spectroscopy study of the adsorption behaviour of α-lactalbumin and β -casein at stainless steel[J]. Journal of Electroanalytical Chemistry, 2005,574(2):261-271.
[21] Liu Z, Dong C, Wang X, et al. Self-assembled biodegradable protein-polymer vesicle as tumor-targeted nanocarrier[J]. ACS Applied Materials & Interfaces, 2014,6(4):2393-2400.
[22] Lee M, Yoo Y S. Supramolecular organization of block oligomers based on rod-shaped mesogen into liquid crystalline assembly[J]. Journal of Materials Chemistry, 2002,12(8):2161-2168.
[23] Lee M, Cho B K, Ihn K J, et al. Supramolecular honeycomb by self-assembly of molecular rods in rod-coil molecule[J]. Journal of the American Chemical Society, 2001,123(19):4647-4678.
[24] Ryu J, Cho B, Lee M. Supramolecular assembly of rigid-flexible block molecules into organized nano-structures[J]. Bulletin-Korean Chemical Society, 2006,27(9):1270-1282.
[25] Antonietti M, Foerster S. Vesicles and liposomes: a self-assembly principle beyond lipids[J]. Advanced Materials, 2003,15(16):1323-1333.
[26] Grzelczak M, Vermant J, Furst E M, et al. Directed self-assembly of nanoparticles[J]. ACS Nano, 2010,4(7):3591-3605.
[27] 王淇,王卓识,陈铁,等.刚棒-线团两亲分子的水溶液自组装研究进展[J].延边大学学报(自然科学版),2012,38(3):221-227.
[28] He M, Han W, Ge J, et al. Annealing effects on the photovoltaic performance of all-conjugated poly(3-alkylthiophene)diblock copolymer-based bulk heterojunction solar cells[J]. Nanoscale, 2011,3(8):3159-3163.
[29] Liu Q, Zhang H, Yin S, et al. Hierarchical self-assembling of dendritic-linear diblock complex based on hydrogen bonding[J]. Polymer, 2007,48(13):3759-3770.
[30] Ajayaghosh A, Praveen V K. π -Organogels of self-assembled p-phenylenevinylenes: soft materials with distinct size, shape, and functions[J]. Accounts of Chemical Research, 2007,40(8):644-656.
[31] Ghosh A, Haverick M, Stump K, et al. Fine-tuning the pH trigger of self-assembly[J]. Journal of the American Chemical Society, 2012,134(8):3647-3650.
[32] Liu J, Pang Y, Huang W, et al. Redox-responsive polyphosphate nanosized assemblies: a smart drug delivery platform for cancer therapy[J]. Biomacromolecules, 2011,12(6):2407-2415.
[33] Liang Y, Fu R, Wu D. Reactive template-induced self-assembly to ordered mesoporous polymeric and carbonaceous materials[J]. ACS Nano, 2013,7(2):1748-1754.
[34] Meng H, Xue M, Xia T, et al. Autonomous in vitro anticancer drug release from mesoporous silica nanoparticles by pH-sensitive nanovalves[J]. Journal of the American Chemical Society, 2010,132(36):12690-12697.
[35] Santoso H T, Singh V, Kalaitzidou K, et al. Enhanced molecular order in polythiophene films electropolymerized in a mixed electrolyte of anionic surfactants and boron trifluoride diethyl etherate[J]. ACS Applied Materials & Interfaces, 2012,4(3):1697-1703.

备注/Memo

收稿日期: 2016-01-26 基金项目: 国家自然科学基金资助项目(2156020075,21564016)*通信作者: 金龙一(1970—),男,教授,研究方向为超分子化学.

更新日期/Last Update: 2016-03-20