首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effect of Cationic Brush-Type Copolymers on the Colloidal Stability of GdPO4 Particles with Different Morphologies in Biological Aqueous Media
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Effect of Cationic Brush-Type Copolymers on the Colloidal Stability of GdPO4 Particles with Different Morphologies in Biological Aqueous Media

机译:阳离子刷式共聚物对生物介质中不同形态的GDPO4颗粒胶体稳定性的影响

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In this study, we present the synthesis of cationic brush-type polyelectrolytes and their use in the stabilization of GdPO4 particles in aqueous media. Polymers of various compositions were synthesized via the RAFT polymerization route. SEC equipped with triple detection (RI, DP, RALS, and LALS) was used to determine the molecular parameters (M-n, M-w, M-w/M-n). The exact composition of synthesized polymers was determined using NMR spectroscopy. Cationic brush-type polymers were used to improve the stability of aqueous GdPO4 particle dispersions. First, the IEPs of GdPO4 particles with different morphologies (nanorods, hexagonal nanoprisms, and submicrospheres) were determined by measuring the zeta potential of bare particle dispersions at various pH values. Afterward, cationic brush-type polyelectrolytes with different compositions were used for the surface modification of GdPO4 particles (negatively charged in alkaline media under a pH value of similar to 10.6). The concentration and composition effects of used polymers on the change in particle surface potential and stability (DLS measurements) in dispersions were investigated and presented in this work. The most remarkable result of this study is redispersible GdPO4 nanoparticle colloids with increased biocompatibility and stability as well as new insights into possible cationic brush-type polyelectrolyte applicability in both scientific and commercial fields.
机译:在这项研究中,我们介绍了阳离子刷式聚电解质的合成及其在水性介质中稳定Gdpo4颗粒的用途。通过筏聚合途径合成各种组合物的聚合物。使用三重检测(RI,DP,RALS和LALS)的SEC来确定分子参数(M-N,M-W,M-W / M-N)。使用NMR光谱法测定合成聚合物的确切组成。阳离子刷式聚合物用于改善GDPO4颗粒分散体水溶液的稳定性。首先,通过在各种pH值下测量裸颗粒分散体的裸颗粒分散体的ζ电位来确定具有不同形态(纳米棒,六边形纳米碳纳压纳米型和亚潜亚丘脑)的GDPO4颗粒的IEPs。之后,使用具有不同组成的阳离子刷式聚电解质用于GDPO4颗粒的表面改性(在类似于10.6的pH值下在碱性培养基中带负电)。研究并介绍了二手聚合物对分散体中颗粒表面电位变化和稳定性(DLS测量)的浓度和组成作用进行研究。该研究中最显着的结果是可再分散的GDPO4纳米粒子胶体,其具有增加的生物相容性和稳定性以及在科学和商业领域的可能阳离子刷式聚电解质的新见解。

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