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首页> 外文期刊>Nanoscale >Polyoxometalates encapsulated into hollow double-shelled nanospheres as amphiphilic nanoreactors for an effective oxidative desulfurization
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Polyoxometalates encapsulated into hollow double-shelled nanospheres as amphiphilic nanoreactors for an effective oxidative desulfurization

机译:金属封装到空心double-shelled团簇的两亲性nanoreactors为一个有效的氧化脱硫

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摘要

Although some catalytic hollow nanoreactors have been fabricated in the past, the encapsulated active species focus on metal nanoparticles, and a method for polyoxometalate (POM)-containing hollow nanoreactors has seldom been developed. Herein, we report a synthetic strategy towards POM-based amphiphilic nanoreactors, where the hollow mesoporous double-shelled SiO2@C nanospheres were used to encapsulate Keggin-type H3PMo12O40(PMo12). The outer hydrophobic carbon shell was beneficial for the enrichment of the organic substrate around the nanoreactor and simultaneously prevented the deposition of POMs on the outer surface of the nanoreactor. The inner hydrophilic silica cavity was modified by two types of organosilanes, which not only created an amphiphilic cavity environment but also acted as an anchor to mobilize PMo12. As the POM nanoreactor had the hydrophilic@hydrophobic SiO2@C shell and an amphiphilic cavity, both dibenzothiophene (DBT) and H(2)O(2)could smoothly diffuse into the nanosized cavity, where the DBT was effectively oxidized (conversion: >99%) by the immobilized PMo(12)under mild conditions. Importantly, the control experiments indicated that the confined effect of nanoreactor, amphiphilic SiO2@C double-shell, unique cavity environment, and mesoporous channels accounted for an excellent catalytic performance. Moreover, the nanoreactor was robust and could be reused for five cycles without loss of activity.
机译:尽管一些催化空心nanoreactors过去制造,封装活跃的物种专注于金属纳米颗粒一种方法polyoxometalate (POM)包含空心nanoreactors已经很少了。在此,我们报告一个合成策略POM-based两亲性nanoreactors,空心介孔double-shelled SiO2@C团簇是用来封装Keggin-typeH3PMo12O40 (PMo12)。壳牌是有益的浓缩在nanoreactor和有机基质同时防止酸盐的沉积nanoreactor的外表面。内心的亲水性硅腔被修改两种类型的有机硅烷,不仅但创建了一个两亲性腔环境也作为一个锚动员PMo12。POM nanoreactor hydrophilic@hydrophobicSiO2@C外壳和两亲性腔硫芴(印度生物技术部)和H (2) O(2)能顺利扩散到纳米尺度的腔,印度生物技术部是有效地氧化(转换:> 99%)在温和条件下固定化PMo(12)。重要的是,控制实验表明nanoreactor的限制作用,两亲性SiO2@C壳体时,独特的腔环境,和介孔通道一个优秀的催化性能。nanoreactor健壮,可以重用5周期没有损失的活动。

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