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首页> 外文期刊>Optical Materials >Complexes of rare earth ions embedded in poly(lactic-co-glycolic acid) (PLGA) nanoparticles: Characterization and spectroscopic study
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Complexes of rare earth ions embedded in poly(lactic-co-glycolic acid) (PLGA) nanoparticles: Characterization and spectroscopic study

机译:嵌入乳酸-乙醇酸共聚物(PLGA)纳米粒子中的稀土离子配合物:表征和光谱研究

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摘要

Several Eu(III) complexes [(Eu(L1)(tta)(2)(H2O)]center dot CF3SO3, Eu(L2)(NO3)(3) and Eu(L3) with L1 = N, N'-bis(2-pyridylmethylidene)-1,2-(R,R+S,S)-cyclohexanediamine, L2 = N, N'-bis(2-quinolylmethylidene)- 1,2-(R,R+S,S)-cyclohexanediamine, L3 N-quinolyl-N,N',N'-trans-l,2-cyclohexylenediaminetriacetic acid and tta = 2-thenoyltrifluoroacetyl-acetonate] and one Y(III) complex [(Y(L1)(tta)(2)(H2O)]center dot CF3SO3] have been embedded, with a different degree of efficiency, in Poly(lactic-co-glycolic acid) (PLGA) matrix by using two different composition [Poly(lactic(50%)-co-glycolic acid(50%), briefly PLGA 50:50 and Poly(lactic(75%)-co-glycolic acid(25%), briefly PLGA 75:25], giving nanoparticles characterized by a monodispersed distribution of the size (diameter around 200 nm). The [Eu(L1)(tta)(2)(H2O)]center dot CF3SO3 shows the most efficient Eu(III) luminescence (Phi(Tot) = 25%) when embedded in PLGA 75:25. The release of the complex over the time in aqueous buffered solution has been followed by means of the decrease of Eu(III) luminescence and it is faster upon increasing the temperature to 37 degrees C, in particular for the PLGA 50:50 system, whose melting temperature (Tm) is lower (33 degrees C) than both the Tm of PLGA 75:25 (38 degrees C) and the basal one.
机译:几种Eu(III)络合物[(Eu(L1)(tta)(2)(H2O)]中心点CF3SO3,Eu(L2)(NO3)(3)和Eu(L3),L1 = N,N'-bis (2-吡啶基亚甲基)-1,2-(R,R + S,S)-环己二胺,L2 = N,N'-双(2-喹啉基亚甲基)-1,2-(R,R + S,S)-环己二胺,L3 N-喹啉基-N,N',N'-反-1,2-环己二胺二乙酸和tta = 2-thenoyltrifluoroacetyl-acetonate]和一种Y(III)配合物[(Y(L1)(tta)(2 )(H2O)]中心点CF3SO3]通过使用两种不同的成分[聚(乳酸(50%)-共-)嵌入到聚乳酸-乙醇酸(PLGA)基质中,效率不同。乙醇酸(50%),简要PLGA 50:50和聚(乳酸(75%)-共乙醇酸(25%),简要PLGA 75:25],得到的纳米颗粒的特征是粒径呈单分散分布(直径约[Eu(L1)(tta)(2)(H2O)]中心点CF3SO3当嵌入PLGA 75:25时显示出最有效的Eu(III)发光(Phi(Tot)= 25%)。随着时间的推移,复合物在缓冲水溶液中的释放是随后通过减少Eu(III)发光,将温度提高到37摄氏度时更快,特别是对于PLGA 50:50系统,其熔化温度(Tm)低于(33摄氏度) PLGA的Tm为75:25(38摄氏度)和基础温度。

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