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Surface Functionalization of Natural Rubber by UV-Induced Thiol-ene Chemistry

机译:UV诱导硫醇 - 烯化学天然橡胶的表面官能化

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Natural rubber (NR) surfaces with tailored physicochemical properties and spatially controlled surface topology were prepared by exploiting radical- mediated thiol-ene chemistry. Selected functional thiols were immobilized onto NR surfaces by the photo-induced addition reaction across the unsaturated C=C double bonds of the cis-1,4-isoprene units. Themodified elastomer surfaces are characterized by means of ATR FTIR spectroscopy to follow changes in the chemical surface composition, and by contact angle measurements to study changes in surface polarities. The results evidence the versatility of this photochemical functionalization route since different surface characteristics and surface reactivities were obtained, depending on the chemical nature of the attached thiol. In addition, the influence of the surface functionalization on bulk properties and surface morphology was determined by tensile tests and microscopic techniques, respectively. Results show that both tensile properties and surface morphology are not affected by the photochemical functionalization process. The immobilized thiols were further used as reactive anchor groups for a subsequent immobilization of inorganic silica particles, resulting in a well-defined change in surface roughness and topology. Spatial control of surface properties was accomplished by photolithographic techniques that enabled a patterned immobilization of inorganic particles onto NR surfaces. Microscopic techniques revealed the selective coupling of the inorganic particles in the illuminated surface areas that were defined by high resolution and clear edges.
机译:通过利用自由基介导的硫醇 - 烯化学制备具有量身定制的物理化学性质和空间控制的表面拓扑的天然橡胶(NR)表面。将所选择的官能硫醇通过在Cis-1,4-异戊二烯单元的不饱和C = C双键上通过光致加成反应将其固定在Nr表面上。拓展弹性体表面的特征在于ATR FTIR光谱,以遵循化学表面组合物的​​变化,并通过接触角测量来研究表面极性的变化。结果证明了这种光化学官能化路线的多功能性,因为获得了不同的表面特征和表面重掺杂,这取决于附着的硫醇的化学性质。此外,通过拉伸试验和微观技术分别测定了表面官能化对散装性能和表面形态的影响。结果表明,拉伸性能和表面形态不受光化学官能化过程的影响。固定化的硫醇进一步用作随后固定无机二氧化硅颗粒的反应性锚固基团,导致表面粗糙度和拓扑的明确变化。通过光刻技术完成表面性质的空间控制,使得使无机颗粒的图案化固定在NR表面上。显微镜技术揭示了由高分辨率和透明边缘限定的照射表面区域中的无机颗粒的选择性偶联。

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