首页> 外文期刊>Journal of Polymer Research >Preparation of grafted particles PGMA/SiO2 with a new surface-initiating system of mercapto group/BPO and their functionalization transformation
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Preparation of grafted particles PGMA/SiO2 with a new surface-initiating system of mercapto group/BPO and their functionalization transformation

机译:新型巯基/ BPO表面引发体系制备接枝颗粒PGMA / SiO2及其官能化转变

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摘要

A new surface-initiating system for free radical graft-polymerization of lipophilic vinyl monomer was designed. The coupling agent γ-mercaptopropyl trimethoxysilane (MPMS) was first bonded onto the surfaces of silica gel particles, obtaining the modified particles MPMS-SiO_2. So a new surface-initiating system was constituted by mercapto group on the surfaces of MPMS-SiO_2 and dibenzoyl peroxide (BPO) in the solution. Through the proton transfer of mercapto groups to the decomposition product of BPO, a great deal of primary sulfur free radicals were produced on the surfaces of the particles, leading to the graft-polymerization of glycidyl methacrylate (GMA) on silica gel particles, obtaining the grafted particles PGMA/SiO_2 with a high PGMA grafting degree (about 26 g/100 g). The effects of the main factors on the graft polymerization of GMA were examined and the corresponding mechanism was investigated. The functionalization transformations of the grafted particles PGMA/SiO_2 were conducted via ring-opening reaction of the epoxy groups with 5-aminosalicylic acid (5-ASA) and iminodiacetic acid (IDAA) as reagents, respectively, obtaining two functional composite materials, SA-PGMA/SiO_2 and IDAA-PGMA/SiO_2. The new route of surface-initiated graft-polymerization is feasible and effective. The suitable temperature is 55 C and the appropriate used amount of BPO is 1.0 % of the monomer mass. The grafted particles PGMA/SiO_2 are easy to be transformed into functional composite particles via the ring-opening reaction of epoxy groups. SA-PGMA/SiO_2 particles have excellent extracting ability for alkaloids, and have an adsorption capacity of 87 mg/g for matrine; IDAA-PGMA/SiO_2 particles have strong chelating adsorption action for heavy metal ions, and have an adsorption capacity of 360 mg/g for Pb ~(2+) ion.
机译:设计了一种新的亲脂性乙烯基单体自由基接枝聚合的表面引发体系。首先,将偶联剂γ-巯基丙基三甲氧基硅烷(MPMS)结合到硅胶颗粒表面,得到改性颗粒MPMS-SiO_2。因此,由溶液中MPMS-SiO_2表面的巯基和过氧化二苯甲酰(BPO)构成了一种新的表面引发体系。通过巯基的质子转移到BPO的分解产物中,在颗粒表面产生了大量的伯硫自由基,导致甲基丙烯酸缩水甘油酯(GMA)在硅胶颗粒上的接枝聚合,从而获得了接枝度高(约26 g / 100 g)的PGMA / SiO_2颗粒。研究了主要因素对GMA接枝聚合反应的影响,并研究了相应的机理。通过环氧基与5-氨基水杨酸(5-ASA)和亚氨基二乙酸(IDAA)分别作为试剂的开环反应,进行了接枝颗粒PGMA / SiO_2的官能化转化,获得了两种功能复合材料SA- PGMA / SiO_2和IDAA-PGMA / SiO_2。表面引发接枝聚合的新途径是可行和有效的。合适的温度为55℃,BPO的合适用量为单体质量的1.0%。接枝颗粒PGMA / SiO_2易于通过环氧基的开环反应转变为功能性复合颗粒。 SA-PGMA / SiO_2颗粒对生物碱具有极好的提取能力,对苦参碱的吸附能力为87 mg / g。 IDAA-PGMA / SiO_2颗粒对重金属离子具有很强的螯合吸附作用,对Pb〜(2+)离子的吸附能力为360 mg / g。

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