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第 7 期 钱逢宜,等: 双羟基 Gemini 表面活性剂的溶液性能及其聚集形态 ·1345·
还有望作为介孔材料制备过程中的模板剂。 Journal of Colloid and Interface Science, 2011, 356(1): 176-181.
[15] Pei X M, Zhao J X, You Y, et al. Wormlike micelle formation and
参考文献: rheological behavior in the aqueous solutions of mixed sulfate gemini
[1] Zhao Jianxi (赵剑曦). Gemini surfactants: Role and significance of surfactant without spacer group and dodecyltrimethylammonium
its spacer in self-assembly[J]. Progress in Chemistry (化学进展), bromide[J]. Chinese Journal of Chemistry, 2011, 29(10): 2003-2006.
2014, 26(8): 1339-1351. [16] Pei Xiaomei (裴晓梅), Zhao Jianxi (赵剑曦), Wei Xilian (魏西莲).
[2] Sugahara T, Takamatsu Y, Bhadani A, et al. Characterization of the Effect of sodium salicylate on the formation and properties of
micelle structure of oleic acid-based gemini surfactants: Effect of wormlike micelles in aqueous cationic gemini surfactant solutions[J].
stereochemistry[J]. Physical Chemistry Chemical Physics, 2018, Acta Phys⁃Chim Sin (物理化学学报), 2011, 27(4): 913-917.
20(13): 8874-8880. [17] Song Binglei (宋冰蕾), Chen Tao (陈涛), Tian Jinnian (田金年), et
[3] Wang Yakui (王亚魁), Jiang Yajie (姜亚洁), Geng Tao (耿涛), et al. al. Lyotropic liquid crystalline phases formed by gemini surfactants
Synthesis and application properties of a Gemini cationic surfactant in an ionic liquid[J]. Chemical Industry and Engineering Progress (化
with diamide groups[J]. Fine Chemicals (精细化工), 2019, 36(1): 工进展), 2015, 34(12): 4348-4355.
44-50. [18] Sheng Y J, Yao J Y, Chen Q B, et al. Effect of 1D twisted water
[4] Jeong K J, Yethiraj A. The driving force for the association of gemini chains confined in channels formed by a gemini amphiphile on its
surfactants[J]. Journal of Physical Chemistry B, 2018, 122(13): 3259- crystal stability[J]. Cryst Eng Comm, 2015, 17(6): 1439-1447.
3265. [19] Pei X M, Zhang Q, Liu Z, et al. Surface dilatational properties of
[5] Deng S L, Zhao J X. Self-assembly of cationic gemini surfactants, Gemini surfactants containing multiple hydroxyl groups[J]. Colloid
alkanediyl-bis-(dimethyldodecyl-ammonium bromide), in cyclohexane: and Polymer Science, 2016, 294(9): 1405-1412.
Effects of spacer length on their association into reverse lyotropic [20] Pei Xiaomei (裴晓梅), Song Binglei (宋冰蕾), Xu Zonghui (许宗
liquid crystalline or reverse vesicles[J]. Soft Matter, 2018, 14: 734-
会), et al. Synthesis and surface activities of a novel quaternary
741.
ammonium gemini surfactant with multiple hydroxyl groups[J].
[6] Feng L, Xie D H, Song B L, et al. Aggregate evolution in aqueous
Chinese Journal of Synthetic Chemistry (合成化学), 2013, 21(6):
solutions of a Gemini surfactant derived from dehydroabietic acid[J].
695-697.
Soft Matter, 2018, 14: 1210-1218.
[21] Lei L, Feng L, Song B L, et al. Ionic liquid crystals with novel
[7] Wang X Y, Wang J, Wang Y L, et al. Effect of the nature of the spacer
thermal properties formed by the gemini surfactants containing four
on the aggregation properties of Gemini surfactants in an aqueous
hydroxyl groups[J]. RSC Advances, 2016, 6(101): 99361-99366.
solution[J]. Langmuir, 2004, 20(1): 53-56.
[22] Li Rong (李蓉), Sun Zheng (孙正), Zhang Ziying (张子颖), et al.
[8] Menger F M, Littau C A. Gemini surfactants: a new class of
Synthesis and surface properties of quaternary gemini surfactants
self-assembling molecules[J]. Journal of the American Chemical
with multiple hydroxyl groups[J]. Chinese Journal of Synthetic
Society, 1993, 115(22): 10083-10090.
Chemistry (合成化学), 2015, 23(8): 707-710.
[9] Zhang Z G, Zheng P Z, Guo Y M, et al. The effect of the spacer
[23] Zhen L L, Liu K H, Huang D, et al. Structure-property relationship of
rigidity on the aggregation behavior of two ester-containing gemini
sulfosuccinic acid diester sodium salt micelles: 3D-QSAR model and
surfactants[J]. Journal of Colloid and Interface Science, 2012,
DPD simulation[J]. Journal of Dispersion Science and Technology,
379(1): 64-71.
2016, 37(7): 941-948.
[10] Alami E, Levy H, Zana R, et al. Alkanediyl-alpha, omega-bis
[24] Groot R D, Warren P B. Dissipative particle dynamics: Bridging the
(dimethylalkylammonium bromide) surfactants .2. Structure of the
gap between atomistic and mesoscopic simulation[J]. Journal of
lyotropic mesophases in the presence of water[J]. Langmuir, 1993,
Chemical Physics, 1997, 107(11): 4423-4435.
9(4): 940-944.
[25] Tomašić V, Biliškov N, Mihelj T, et al. Thermal behaviour and
[11] Wettig S D, Nowak P, Verrall R E. Thermodynamic and aggregation
structural properties of surfactant-Picrate compounds: The effect of
properties of gemini surfactants with hydroxyl substituted spacers in
the ammonium headgroup number[J]. Thermochimica Acta, 2013,
aqueous solution[J]. Langmuir, 2002, 18(14): 5354-5359.
569: 25-35.
[12] Pei X M, Zhao J X, Ye Y Z, et al. Wormlike micelles and gels
[26] Alami E, Beinert G, Marie P, et al. Alkanediyl-α, ω-bis
reinforced by hydrogen bonding in aqueous cationic gemini surfactant
(dimethylalkylammonium bromide) surfactants. 3. behavior at the
systems[J]. Soft Matter, 2011, 7: 2953-2960.
air-water interface[J]. Langmuir , 1993, 9(6): 1465-1467.
[13] Pei X M, You Y, Zhao J X, et al. Adsorption and aggregation of
[27] Sun Zhigang (孙志刚), Niu Ruixia (牛瑞霞), Dong Pengxu (董彭
2-hydroxyl-propanediyl-α, ω-bis (dimethyldodecyl ammonium
旭), et al. Aggregation behavior of aqueous solutions of long-chain
bromide) in aqueous solution: Effect of intermolecular hydrogen-
bonding[J]. Journal of Colloid and Interface Science, 2010, 351(2): imidazolium ionic liquids surfactant[J]. Applied Chemical Industry
457-465. (应用化工), 2018, 47(12): 2620-2623.
[14] Pei X M, Zhao J X, Wei X L. Wormlike micelles formed by mixed [28] Zhu Sen (朱森). Capacity and computer simulation of gemini
cationic and anionic gemini surfactants in aqueous solution[J]. surfactants[D]. Tianjing: Tianjing University (天津大学), 2006.