Jung Sang-Yong, Kim Bo-Kyung, Kim Hyoung-Jun, Oh Jae-Min
Department of Energy and Materials Engineering, Dongguk University-Seoul, Seoul 04620, Korea.
JOIN International Ltd. (JIL), Samsung Cheil Bldg., 18th Fl. 309, Teheran-ro, Gangnam-gu, Seoul 06151, Korea.
Nanomaterials (Basel). 2021 Mar 2;11(3):620. doi: 10.3390/nano11030620.
Mixed metal oxide (MMO) with relatively homogeneous mesopores was successfully obtained by calcination and reconstruction of albumin-templated layered double hydroxide (LDH). The aggregation degree of albumin-template was controlled by adjusting two different synthesis routes, coprecipitation and reconstruction. X-ray diffraction patterns and scanning electron microscopic images indicated that crystal growth of LDH was fairly limited during albumin-templated coprecipitation due to the aggregation. On the hand, crystal growth along the lateral direction was facilitated in albumin-templated reconstruction due to the homogeneous distribution of proteins moiety. Different state of albumin during LDH synthesis influenced the local disorder and porous structure of calcination product, MMO. The N adsorption-desorption isotherms demonstrated that calcination on reconstructed LDH produced MMO with large specific surface area and narrow distribution of mesopores compared with calcination of coprecipitated LDH.
通过对白蛋白模板层状双氢氧化物(LDH)进行煅烧和重构,成功获得了具有相对均匀介孔的混合金属氧化物(MMO)。通过调整共沉淀和重构这两种不同的合成路线来控制白蛋白模板的聚集程度。X射线衍射图谱和扫描电子显微镜图像表明,在白蛋白模板共沉淀过程中,由于聚集作用,LDH的晶体生长受到相当大的限制。另一方面,由于蛋白质部分的均匀分布,在白蛋白模板重构过程中有利于沿横向方向的晶体生长。LDH合成过程中白蛋白的不同状态影响了煅烧产物MMO的局部无序度和多孔结构。N吸附-脱附等温线表明,与共沉淀LDH的煅烧相比,重构LDH的煅烧产生了具有大比表面积和窄介孔分布的MMO。