首页> 外文学位 >Fundamental properties of transition metal complex doped-calcium phosphate/porous silicon/silicon structures.
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Fundamental properties of transition metal complex doped-calcium phosphate/porous silicon/silicon structures.

机译:过渡金属配合物掺杂的磷酸钙/多孔硅/硅结构的基本性能。

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摘要

Silicon is typically not regarded as a promising biomaterial due to its poor biocompatibility. The demonstration of the growth of hydroxyapatite (the mineral phase of bone, Ca10(PO4)6(OH) 2) on porous Si/Si substrate in 1995 has altered its potential landscape as a biomaterial. In this work, the incorporation of cis-platin (cis-diamminedichloroplatinum(II)), carbo-platin ([cis-diammine(cyclobutane-1,1-dicarboxylato]platinum(II)), and Pt(en)Cl2 (ethylenediam mine dichloro platinum (II)) within layers of calcium phosphate on porous Si/Si structures have been investigated. In this context, one could visualize the construction of an electrically responsive biocompatible Si device capable of localized drug delivery. The influence of initial platinum concentration in the deposition process, the effect of thermal heating of the calcium phosphate/porous Si matrix, and the effect of varying the coordination sphere of Pt complexes on their ability to diffuse into the surroundings have been evaluated.; Selected Ru complexes (i.e., [Ru(bpy)3]Cl2, [Ru(phen) 3]Cl2, etc.) can also be incorporated within calcium phosphate/porous Si/Si. Upon solvent exposure, the effect of thermal heating of the doped calcium phosphate/porous Si/Si matrix was investigated by monitoring the emission of the complexes originating from the calcium phosphate surface and from the solution. One can also alter the amount and rate of Ru complex delivered to the surroundings by applying anodic bias on the PS/Si. Loading of the complex in the calcium phosphate can be adjusted by varying the duration of cathodic bias during the deposition process. In order to achieve immobilization of the Ru complex in the calcium phosphate for possible application of this type of material as a Si-based DNA biosensor, the effect of varying the coordination sphere of a series of Ru complexes (i.e., Ru(bpy)3 2+, Ru(bpy)2Cl2, Ru(bpy)2(O 3SCF3)2) on their diffusion have been examined.; It is also important to understand how the diffusion of the complexes can be affected by their interactions to their perceived biological targets (i.e., DNA) for any applications of these material in drug delivery systems or biosensing. Results show that the addition of a large excess of DNA into a [Ru(phen)3]Cl2-doped calcium phosphate/porous Si/Si structure in water causes the diffusion of [Ru(phen)3]Cl2 from relatively deep regions of the calcium phosphate layers into the surroundings.
机译:硅由于其生物相容性差而通常不被认为是有前途的生物材料。羟基磷灰石(骨骼的矿相,Ca 10 (PO 4 6 (OH) 2 <于1995年在多孔Si / Si衬底上进行了应用,改变了其作为生物材料的潜在前景。在这项工作中,顺铂(cis-diamminedichloroplatinum(II)),卡铂([cis-diammine(cyclobutane-1,1-dicarboxylato] platinum(II))和Pt(en)Cl 2 (乙二胺二氯铂(II)),在此背景下,可以直观地看到一种能够局部定位药物的电响应生物相容性Si器件的构造评估了初始铂浓度在沉积过程中的影响,磷酸钙/多孔硅基体的热加热效应以及改变Pt配合物的配位范围对其扩散到周围环境中的能力的影响。 ;选定的Ru络合物(即[Ru(bpy) 3 ] Cl 2 ,[Ru(phen) 3 ] Cl 2 等)也可以掺入磷酸钙/多孔Si / Si中。在溶剂暴露后,掺杂磷酸钙/ po的热加热效应通过监测源自磷酸钙表面和溶液的配合物的发射,研究了Si / Si基质。还可以通过在PS / Si上施加阳极偏压来改变输送到周围环境的Ru络合物的数量和速率。可以通过改变沉积过程中阴极偏压的持续时间来调节复合物在磷酸钙中的负载。为了将Ru复合物固定在磷酸钙中,以便将该材料用作基于Si的DNA生物传感器,可以改变一系列Ru复合物(即Ru(bpy)< sub> 3 2 + ,Ru(bpy) 2 Cl 2 ,Ru(bpy) 2 (O 3 SCF 3 2 )的扩散。了解这些复合物在药物输送系统或生物传感中的任何应用对它们的感知生物学靶标(即DNA)的相互作用如何影响复合物的扩散也很重要。结果表明,水中大量过量的DNA添加到[Ru(phen) 3 ] Cl 2 掺杂的磷酸钙/多孔Si / Si结构中会导致[Ru(phen) 3 ] Cl 2 从磷酸钙层较深的区域扩散到周围环境中。

著录项

  • 作者

    Li, Xin.;

  • 作者单位

    Texas Christian University.;

  • 授予单位 Texas Christian University.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
  • 关键词

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