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非化学计量比硫醇-烯表面功能化:以金纳米粒子为例

Off-Stoichiometry Thiol-Ene Surface Functionalization: Example with Gold Nanoparticles.

作者信息

Ruska Rihards, Sarakovskis Anatolijs, Zutis Edmunds, Paidere Gunita, Vozny Igor, Cipa Janis, Gabrusenoks Jevgenijs, Freimanis Toms, Zalubovskis Raivis, Anspoks Andris

机构信息

Institute of Solid State Physics, University of Latvia, 8 Kengaraga Street, LV-1063 Riga, Latvia.

Latvian Institute of Organic Synthesis, 21 Aizkraukles Street, LV-1006 Riga, Latvia.

出版信息

Materials (Basel). 2024 Dec 15;17(24):6135. doi: 10.3390/ma17246135.

Abstract

Surface modification is essential in microfluidic applications due to the inherent hydrophobicity of polymers, which can lead to biofouling and reagent denaturation. Despite the development, challenges such as hydrophobic molecule absorption and limitations in scaling are still present. Off-stoichiometry thiol-ene (OSTE) materials have emerged as a promising alternative, offering advantages like rapid prototyping, minimal hydrophobic absorption, and customizable surface chemistries. While the thiol-ene polymerization mechanism is well understood, the fundamental understanding of thiol group binding on OSTE surfaces remains limited. Existing techniques to analyze surface groups lack the capability to confirm the stable presence of thiol groups on the surface. In our study, using Raman and X-ray photoelectron spectroscopy techniques, we investigated a potential method for enhancing the surface properties of OSTE polymer-the attachment of novel linkers to the surface. We have demonstrated our synthesized compound efficiency by binding gold nanoparticles to the OSTE surface. Our findings indicate that chemical reactions involving double bonds with the material surface hold the most potential for effective surface modification for gold binding.

摘要

由于聚合物固有的疏水性,表面改性在微流体应用中至关重要,这种疏水性会导致生物污染和试剂变性。尽管取得了进展,但诸如疏水分子吸收和缩放限制等挑战仍然存在。非化学计量硫醇-烯(OSTE)材料已成为一种有前途的替代方案,具有快速原型制作、最小疏水吸收和可定制表面化学等优点。虽然硫醇-烯聚合机制已得到充分理解,但对OSTE表面上硫醇基团结合的基本理解仍然有限。现有的分析表面基团的技术缺乏确认表面上硫醇基团稳定存在的能力。在我们的研究中,我们使用拉曼光谱和X射线光电子能谱技术,研究了一种增强OSTE聚合物表面性能的潜在方法——将新型连接体附着到表面。我们通过将金纳米颗粒结合到OSTE表面证明了我们合成化合物的效率。我们的研究结果表明,与材料表面的双键发生的化学反应在用于金结合的有效表面改性方面最具潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6571/11679826/a4d4300008e7/materials-17-06135-g001.jpg

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