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Synthesis of diblock copolymers with cellulose derivatives 4. Self-assembled nanoparticles of amphiphilic cellulose derivatives carrying a single pyrene group at the reducing-end

机译:具有纤维素衍生物的二嵌段共聚物的合成4.在还原端带有一个pyr基的两亲纤维素衍生物的自组装纳米颗粒

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Self-assembled cellulose-pyrene nanoparticles were prepared from amphiphilic cellulose derivatives carrying a single pyrene group at the reducing-end, N-(1-pyrenebutyloyl)-β-cellulosylamine (CELL13Py and CELL30Py, the number average degrees of polymerization (DPn) of 13 and 30, respectively) and N-(15-(1-pyrenebutyloylamino)-pentadecanoyl)-β-cellulosylamine (CELL13C15Py and CELL30C15Py, DP_n of 13 and 30, respectively). Transmission electron microscopy (TEM) observation revealed that CELL13C15Py and CELL30C15Py formed self-assembled nanoparticles with the average diameters of 108.8 and 40.0 nm, respectively. The average radius of CELL30C15Py nanoparticles (20.0 nm) agreed well with the molecular length of its cellulose chain (19.2 nm). CELL30C15Py nanoparticles were expected to have monolayered structure, consisting of cellulose shell with radial orientation and hydrophobic core of 15-(1-pyrenebutyloylamino)-pentadecanoyl groups. The fluorescent spectrum of CELL30C15Py nanoparticles showed an excimer emission due to dimerized pyrene groups, indicating that the pyrene groups at the reducing-end of cellulose are associating in the particles. The balance of hydrophilic and hydrophobic parts of the cellulose derivatives controlled their self-assembled nanostructures. X-ray diffraction measurements revealed that radially oriented cellulose chains of CELL30C15Py nanoparticles were mostly amorphous, and at the same time exhibited weak reflection pattern of cellulose II, which is believed to have anti-parallel orientation.
机译:自组装的纤维素-re纳米粒子是由在还原端带有一个pyr基的两亲纤维素衍生物N-(1-py丁基丁酰基)-β-纤维素胺(CELL13Py和CELL30Py,其数均聚合度(DPn))制备的分别为13和30)和N-(15-(1-py丁基丁酰氨基)-十五碳酰基)-β-纤维素胺(CELL13C15Py和CELL30C15Py,DP_n分别为13和30)。透射电子显微镜(TEM)观察表明,CELL13C15Py和CELL30C15Py形成了自组装的纳米粒子,平均直径分别为108.8和40.0 nm。 CELL30C15Py纳米粒子的平均半径(20.0 nm)与其纤维素链的分子长度(19.2 nm)非常吻合。预期CELL30C15Py纳米颗粒具有单层结构,该结构由具有径向方向的纤维素壳和15-(1-py丁基丁基酰氨基)-十五烷基的疏水核组成。 CELL30C15Py纳米粒子的荧光光谱显示由于二聚pyr基团引起的准分子发射,表明纤维素还原端的pyr基团在粒子中缔合。纤维素衍生物的亲水和疏水部分的平衡控制了它们的自组装纳米结构。 X射线衍射测量表明,CELL30C15Py纳米颗粒的径向取向的纤维素链大部分为非晶态,同时表现出纤维素II的弱反射模式,据认为具有反平行取向。

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