由A2和BB ' 2型单体制备的两亲性超支化聚合物的竞争性超分子包封。1-(2-氨基乙基)哌嗪与二乙烯基砜的聚合加成

Jiayan Wu, Cuihua Liu, Chao Gao
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引用次数: 5

摘要

报道了棕榈酰氯修饰的两亲性超支化聚氨基胺(HPAMAM-PC)和聚砜胺(HPSA-PC)在选定染料对上的竞争性主-客包封。甲基橙(MO)、甲基蓝(MB)、玫瑰红(RB)、荧光素钠(FSS)、伊红Y (EY)和苯氧辛B (PB)等水溶性和氯仿不溶性染料可通过HPAMAM-PC和HPSA-PC从水相转移到氯仿相。利用紫外/可见光谱测定了单染料包封情况下不同染料的负载能力(Cloads)(实验1)。选择四对染料:(1)MO和RB, (2) MO和PB, (3) MO和EY, (4) MO和FSS进行对比实验,研究竞争相互作用对染料对负载的影响。因此,在一步双染料胶囊化(实验II)和渐进式双染料胶囊化(实验III)的情况下,我们发现了三种竞争关系:(1)与单染料包封相比,在RB或PB的存在下,MO的包封量显著降低,而MO的存在对RB和PB的包封量影响不大;(2)两种染料同时被HPAMAM-PC或HPSA-PC (MO & EY)包封时,两种染料的包封量均有所降低;(3)水溶液中有MO存在时,超支化聚合物对FSS的包封效果较差。1h NMR, FTIR和热重分析(TGA)证实了所得到的竞争性封装。定义对MO的相对选择常数(Rdye/MO),定量衡量各染料对MO的竞争能力。RB、PB的竞争能力大于MO,而EY几乎与MO相当,FSS的竞争能力低于MO。染料分子的大小、染料分子与聚合物之间的静电酸碱相互作用、不同染料之间的相互作用是造成这一结果的主要原因。
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Competitive Supramolecular Encapsulation of Amphiphilic HyperbranchedPolymers Made from A2 and BB’2 Type Monomers. 1. Polyadditionof 1-(2-aminoethyl)piperazine to Divinyl Sulfone
The competitive host-guest encapsulations of palmityl chloride-modified amphiphilic hyperbranched poly(amido-amine) (HPAMAM-PC) and poly(sulfone-amine) (HPSA-PC) to selected pairs of dyes are reported. Water- soluble and chloroform-insoluble dyes, such as methyl orange (MO), methyl blue (MB), rose bengal (RB), fluorescein so- dium (FSS), eosin Y (EY) and phloxine B (PB), can be transferred from aqueous phase into chloroform phase by the HPAMAM-PC and HPSA-PC. UV/Vis spectra were used to determine the loading capabilities (Cloads) of different dyes in the case of single-dye encapsulations (Exp I). Four pairs of dyes: (1) MO and RB, (2) MO and PB, (3) MO and EY, (4) MO and FSS, were chosen to perform comparative experiments to investigate the influence of competitive interactions on the Cloads of dye pairs. As a result, in the cases of one-step double-dye encapsulations (Exp II) and gradual double-dye en- capsulations (Exp III), we found three kinds of competitive relationships: (1) The Cload of MO decreased significantly in the presence of either RB or PB, compared with the Cload in the single-dye encapsulation, while the existence of MO did not affect the encapsulations to RB and PB greatly, (2) the Cloads of both dyes decreased if they were encapsulated simul- taneously by HPAMAM-PC or HPSA-PC (MO & EY), (3) FSS can hardly be encapsulated by the hyperbranched poly- mers with the existence of MO in the aqueous solution. 1 H NMR, FTIR and thermogravimetric analysis (TGA) were used to confirm the resulting competitive encapsulations. Relatively selective constant to MO (Rdye/MO) was defined to measure the competitive ability of each dye to MO quantitatively. The competitive abilities of RB, PB were larger than that of MO, while EY almost equal to MO and FSS lower than MO. The size of the dye molecules, electrostatic acid-base interactions between the dye molecules and the polymers, the interaction between different dyes were considered to be the main causes of the results.
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