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使用二氧化硅合成经济的介孔材料的机理及热优化:对布洛芬有效去除或递送的启示

Synthesis Mechanism and Thermal Optimization of an Economical Mesoporous Material Using Silica: Implications for the Effective Removal or Delivery of Ibuprofen.

作者信息

Kittappa Shanmuga, Cui Mingcan, Ramalingam Malarvili, Ibrahim Shaliza, Khim Jeehyeong, Yoon Yeomin, Snyder Shane A, Jang Min

机构信息

Department of Civil Engineering, Faculty of Engineering, University of Malaya, Kuala Lumpur, Malaysia.

School of Civil, Environmental, and Architectural Engineering, Korea University, Seoul, Republic of Korea.

出版信息

PLoS One. 2015 Jul 10;10(7):e0130253. doi: 10.1371/journal.pone.0130253. eCollection 2015.

Abstract

Mesoporous silica materials (MSMs) were synthesized economically using silica (SiO2) as a precursor via a modified alkaline fusion method. The MSM prepared at 500°C (MSM-500) had the highest surface area, pore size, and volume, and the results of isotherms and the kinetics of ibuprofen (IBP) removal indicated that MSM-500 had the highest sorption capacity and fastest removal speed vs. SBA-15 and zeolite. Compared with commercial granular activated carbon (GAC), MSM-500 had a ~100 times higher sorption rate at neutral pH. IBP uptake by MSM-500 was thermodynamically favorable at room temperature, which was interpreted as indicating relatively weak bonding because the entropy (∆adsS, -0.07 J mol(-1) K(-1)) was much smaller. Five times recycling tests revealed that MSM-500 had 83-87% recovery efficiencies and slower uptake speeds due to slight deformation of the outer pore structure. In the IBP delivery test, MSM-500 drug loading was 41%, higher than the reported value of SBA-15 (31%). The in vitro release of IBP was faster, almost 100%, reaching equilibrium within a few hours, indicating its effective loading and unloading characteristics. A cost analysis study revealed that the MSM was ~10-70 times cheaper than any other mesoporous silica material for the removal or delivery of IBP.

摘要

采用改良的碱熔法,以二氧化硅(SiO₂)为前驱体,经济地合成了介孔二氧化硅材料(MSMs)。在500°C制备的MSM(MSM-500)具有最高的比表面积、孔径和孔体积,布洛芬(IBP)去除的等温线和动力学结果表明,与SBA-15和沸石相比,MSM-500具有最高的吸附容量和最快的去除速度。与商业颗粒活性炭(GAC)相比,MSM-500在中性pH下的吸附速率高约100倍。MSM-500对IBP的吸附在室温下在热力学上是有利的,这被解释为表明键合相对较弱,因为熵(∆adsS,-0.07 J mol⁻¹ K⁻¹)要小得多。五次循环测试表明,由于外孔结构略有变形,MSM-500的回收效率为83-87%,吸附速度较慢。在IBP递送测试中,MSM-500的载药量为41%,高于报道的SBA-15的值(31%)。IBP的体外释放更快,几乎达到100%,在几小时内达到平衡,表明其有效的加载和卸载特性。成本分析研究表明,对于去除或递送IBP,MSM比任何其他介孔二氧化硅材料便宜约10-70倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/109e/4498899/82ebb0535a22/pone.0130253.g001.jpg

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