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首页> 外文期刊>Macromolecular bioscience >Synthesis of Well-Defined Dihydroxy Telechelics by (Co)polymerization of Morpholine-2,5-Diones Catalyzed by Sn(IV) Alkoxide
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Synthesis of Well-Defined Dihydroxy Telechelics by (Co)polymerization of Morpholine-2,5-Diones Catalyzed by Sn(IV) Alkoxide

机译:用SN(IV)醇盐催化的(CO)聚合通过(CO)聚合催化的含硫-2,5-二硫代酮溶液

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摘要

Well-defined dihydroxy telechelic oligodepsipeptides (oDPs), which have a high application potential as building blocks for scaffold materials for tissue engineering applications or particulate carrier systems for drug delivery applications are synthesized by ring-opening polymerization (ROP) of morpholine-2,5-diones (MDs) catalyzed by 1,1,6,6-tetra-n-butyl-1,6-distanna-2,5,7,10-tetraoxacyclodecane (Sn(IV) alkoxide). In contrast to ROP catalyzed by Sn(Oct)(2), the usage of Sn(IV) alkoxide leads to oDPs, with less side products and well-defined end groups, which is crucial for potential pharmaceutical applications. A slightly faster reaction of the ROP catalyzed by Sn(IV) alkoxide compared to the ROP initiated by Sn(Oct)(2)/EG is found. Copolymerization of different MDs resulted in amorphous copolymers with T(g)s between 44 and 54 degrees C depending on the molar comonomer ratios in the range from 25% to 75%. Based on the well-defined telechelic character of the Sn(IV) alkoxide synthesized oDPs as determined by matrix-assisted laser desorption/ionization time of flight measurements, they resemble interesting building blocks for subsequent postfunctionalization or multifunctional materials based on multiblock copolymer systems whereas the amorphous oDP-based copolymers are interesting building blocks for matrices of drug delivery systems.
机译:定义的二羟基TeleChelic Oligodepsipeptips(ODP),作为用于组织工程应用或用于药物递送应用的颗粒状载体系统的支架材料的结构块的高应用势通过吗啉-2,5的开环聚合(ROP)合成 - 由1,1,6,6-四 - 丁基-1,6-α-2,5,7,10-四氧胞菌(Sn(IV)醇盐)催化的二氧化硅烷(MDS)。与Sn(OCT)(2)催化的ROP对比,SN(IV)醇盐的用法导致ODP,具有较少的副产物和明确定义的端基,这对于潜在的药物应用至关重要。与由Sn(OCC)(2)/例如由Sn(OCT)(2)/ Em引发的ROP相比,ROP催化的ROP催化的ROP略微更快的反应。根据摩尔共聚单体比率为25%至75%,不同Mds的不同MDS的共聚导致与44至54℃之间的无定形共聚物为44至54℃。基于SN(IV)醇盐的明确定义的Zelechelic特性,通过基质辅助激光解吸/电离时间测量确定的ODP,它们类似于基于多嵌段共聚物系统的后续任务化或多功能材料的有趣构建块,而是无定形ODP基础共聚物是药物递送系统矩阵的有趣构建块。

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