材料科学
沸石
纳米晶材料
碳纳米管
色散(光学)
纳米晶
结晶
硅酸铝
无定形固体
化学工程
金属
合理设计
复合材料
纳米技术
催化作用
有机化学
冶金
化学
工程类
物理
光学
作者
Ploychanok Iadrat,Jananya Jongthong,Anittha Prasertsab,Sukonlaphat Thanphrom,Neal Toewiwat,Somlak Ittisanronnachai,Thanyaporn Wongnate,Chularat Wattanakit
标识
DOI:10.1021/acsami.3c08467
摘要
The rational design of interface materials containing carbon nanotubes (CNTs) and zeolites (zeolite-CNTs) is a promising perspective in chemical and biochemical communities because they exhibit several outstanding properties such as tunable hydrophobicity–hydrophilicity at interfaces. In this contribution, we report the fabrication of Ag-incorporated nanocrystalline BEA-carbon nanotube (CNT) composites via the one-pot inter-zeolite transformation of the micron-sized FAU-CNT composite in the presence of a Ag precursor. By varying the crystallization time, the inter-zeolite transformation mechanism was explored. Indeed, this process involves an amorphous intermediate of aluminosilicate species with a significant change of the crystal morphology in the presence of CNTs in the synthesis gel. Interestingly, the redispersion of metal particles was observed after the inter-zeolite transformation process, resulting in the high dispersion of metal nanoparticles over BEA nanocrystals. Notably, it was revealed that the Ag sites were also stabilized in the presence of CNT interfaces, leading to the availability of highly active Ag+ ions. To illustrate the beneficial aspect of designer materials, the synthesized Ag-incorporated BEA-CNT composites exhibited high antibacterial activity againstEscherichia coli due to the synergistic effect of the active Ag+ species and appropriate hydrophobic and hydrophilic properties of the hybrid material interfaces. This first example opens up perspectives of the rational design of zeolite–CNT interfaces with high metal dispersion via the inter-zeolite transformation approach for biomedical applications.
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