§Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Tianjin 300072, China.
ACS Appl Mater Interfaces. 2015 May 6;7(17):9178-84. doi: 10.1021/acsami.5b01463. Epub 2015 Apr 24.
In this study, an ultrathin, hybrid microcapsule is prepared though coordination-enabled one-step assembly of tannic acid (TA) and titanium(IV) bis(ammonium lactate) dihydroxide (Ti-BALDH) upon a hard-templating method. Briefly, the PSS-doped CaCO3 microspheres with a diameter of 5-8 μm were synthesized and utilized as the sacrificial templates. Then, TA-Ti(IV) coatings were formed on the surface of the PSS-doped CaCO3 templates through soaking in TA and Ti-BALDH aqueous solutions under mild conditions. After removing the template by EDTA treatment, the TA-Ti(IV) microcapsules with a capsule wall thickness of 15 ± 3 nm were obtained. The strong coordination bond between polyphenol and Ti(IV) conferred the TA-Ti(IV) microcapsules high structural stability in the range of pH values 3.0-11.0. Accordingly, the enzyme-immobilized TA-Ti(IV) microcapsules exhibited superior pH and thermal stabilities. This study discloses the formation of TA-Ti(IV) microcapsules that are suitable for use as supports in catalysis due to their extensive pH and thermal stabilities.
在这项研究中,通过单宁酸(TA)和钛(IV)双(乳酸铵)二羟化物(Ti-BALDH)在硬模板法作用下的配位一步组装,制备了一种超薄的混合微胶囊。简要地说,直径为 5-8μm 的掺杂聚电解质 PSS 的 CaCO3 微球被合成并用作牺牲模板。然后,通过在温和条件下将 TA 和 Ti-BALDH 水溶液浸泡在 PSS 掺杂的 CaCO3 模板的表面上,形成 TA-Ti(IV)涂层。用 EDTA 处理去除模板后,得到胶囊壁厚度为 15±3nm 的 TA-Ti(IV)微胶囊。多酚和 Ti(IV)之间的强配位键赋予 TA-Ti(IV)微胶囊在 pH 值 3.0-11.0 范围内的高结构稳定性。因此,固定化酶的 TA-Ti(IV)微胶囊表现出优异的 pH 和热稳定性。这项研究揭示了 TA-Ti(IV)微胶囊的形成,由于其广泛的 pH 和热稳定性,适合用作催化中的载体。