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首页> 外文期刊>Macromolecules >POLY(ETHYLENE OXIDE-CO-BETA-BENZYL L-ASPARTATE) BLOCK COPOLYMERS - INFLUENCE OF THE POLY(ETHYLENE OXIDE) BLOCK ON THE CONFORMATION OF THE POLY(BETA-BENZYL L-ASPARTATE) SEGMENT IN ORGANIC SOLVENTS
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POLY(ETHYLENE OXIDE-CO-BETA-BENZYL L-ASPARTATE) BLOCK COPOLYMERS - INFLUENCE OF THE POLY(ETHYLENE OXIDE) BLOCK ON THE CONFORMATION OF THE POLY(BETA-BENZYL L-ASPARTATE) SEGMENT IN ORGANIC SOLVENTS

机译:聚环氧乙烷-共-BET-苄基-L-天冬氨酸酯嵌段共聚物-聚环氧乙烷-嵌段对有机溶剂中聚(BETA-苄基-L-天冬氨酸酯)段的形成的影响

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The conformation of the poly(beta-benzyl L-aspartate) segment in the poly(ethylene oxide-co-beta-benzyl L-aspartate) (PEO/PBLA) block copolymers (M(w) of PEO = 5000 and 20 units of beta-benzyl L-aspartate) was investigated by H-1 NMR, by specific optical rotation measurements, and by 2D H-1,H-1 NOESY NMR in chloroform, dimethyl sulfoxide (DMSO), and mixtures of chloroform/DMSO. The comparison between the H-1 NMR spectra of the block copolymer in CDCl3 and the one in DMSO-d(6) showed that the PBLA blocks adopt a different conformation depending upon the solvents. The specific rotation of the block copolymer at 546 nm demonstrated that the PBLA segments adopt a left-handed alpha-helix conformation in chloroform. PBLA homopolymer with the same molecular weight as the PBLA segment in the block copolymer showed no evidence of alpha-helix formation in the same conditions, indicating that the PEO segment in the block copolymer is essential to allow PBLA to take the alpha-helix structure. On the other hand, the specific rotation of the PEO/PBLA block copolymer in DMSO at the same wavelength showed that the PBLA segments have a random-coil conformation in this solvent. Moreover. the measurement of the specific rotation of the block copolymer in mixtures of x% CHCl3/(100 - x)% DMSO (0 less than or equal to x less than or equal to 100) demonstrated that the left-handed alpha-helix conformation adopted by the PBLA segments in chloroform is stable. Conversely, the PBLA homopolymer cannot be solubilized in mixtures of CHCl3/DMSO, although this homopolymer is soluble in pure CHCl3 and in pure DMSO. The 2D H-1,H-1 NOESY NMR spectrum in CDCl3 gave evidence of interactions between the methylene protons (CO2CH2C6H5) of the PBLA segments and the methylene protons of the PEO blocks on one hand and between the benzyl protons of the PBLA segments and the methylene protons of the PEO blocks on the other. Such interactions are not observed in DMSO-d(6). Thus, the stability of the left-handed alpha-helix conformation of the PBLA blocks (having low molecular weights) in chloroform can be explained by the interactions existing between the PBLA and the PEO blocks, Moreover, these interactions also allow the solubilization of the block copolymer in mixtures of CHCl3/DMSO. [References: 34]
机译:聚(环氧乙烷-共-β-苄基L-天冬氨酸)(PEO / PBLA)嵌段共聚物(M(w)的PEO = 5000和20个单位的通过H-1 NMR,特定旋光度测量和2D H-1,H-1 NOESY NMR在氯仿,二甲基亚砜(DMSO)和氯仿/ DMSO混合物中研究β-苄基L-天冬氨酸)。 CDCl3中的嵌段共聚物与DMSO-d(6)中的嵌段共聚物的H-1 NMR光谱比较表明,PBLA嵌段的结构取决于溶剂。嵌段共聚物在546 nm处的比旋光表明PBLA链段在氯仿中采用左旋α-螺旋构象。分子量与嵌段共聚物中PBLA链段相同的PBLA均聚物在相同条件下没有显示出α-螺旋形成的迹象,表明嵌段共聚物中的PEO链段对于使PBLA采取α-螺旋结构至关重要。另一方面,在相同波长下,PEO / PBLA嵌段共聚物在DMSO中的比旋光度表明PBLA链段在该溶剂中具有无规卷曲构象。此外。在x%CHCl3 /(100-x)%DMSO(0小于或等于x小于或等于100)的混合物中嵌段共聚物的比旋光度的测量结果表明采用左手的α-螺旋构象由PBLA链段在氯仿中稳定。相反,PBLA均聚物不能溶解在CHCl3 / DMSO的混合物中,尽管该均聚物可溶于纯CHCl3和纯DMSO。 CDCl3中的2D H-1,H-1 NOESY NMR光谱一方面证明了PBLA片段的亚甲基质子(CO2CH2C6H5)与PEO嵌段的亚甲基质子之间相互作用,另一方面证明了PBLA片段和另一方面,PEO嵌段的亚甲基质子。在DMSO-d(6)中未观察到此类相互作用。因此,PBLA嵌段(具有低分子量)在氯仿中的左旋α-螺旋构象的稳定性可以通过PBLA和PEO嵌段之间存在的相互作用来解释。此外,这些相互作用还可以溶解CHCl3 / DMSO混合物中的嵌段共聚物。 [参考:34]

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