1.延安大学化学与化工学院,陕西 延安 716000
2.内蒙古科学技术研究院矿产资源利用与冶金研究所,内蒙古 呼和浩特 010070
3.中国科学院青海盐湖研究所中国科学院盐湖资源综合高效利用重点实验室, 青海 西宁 810008
王亚斌(1984—),男,博士,副 教 授,ybw@yau.edu.cn
赵文廷(1995—),男,博士,副研究员,zhaowt@imast.ac.cn
收稿:2025-11-25,
修回:2025-12-26,
网络首发:2026-01-13,
移动端阅览
王亚斌, 黄亮珠, 赵文廷, 丁秀萍. 基于树枝状结构的核壳型纳米反应器研究进展[J]. 化工学报,
WANG Yabin, HUANG Liangzhu, ZHAO Wenting, DING Xiuping. Research progress in core-shell nanoreactors on the basis of dendritic architectures[J]. CIESC Journal,
王亚斌, 黄亮珠, 赵文廷, 丁秀萍. 基于树枝状结构的核壳型纳米反应器研究进展[J]. 化工学报, DOI: 10.11949/0438-1157.20251319
WANG Yabin, HUANG Liangzhu, ZHAO Wenting, DING Xiuping. Research progress in core-shell nanoreactors on the basis of dendritic architectures[J]. CIESC Journal, DOI: 10.11949/0438-1157.20251319
核壳型纳米反应器由内层核芯材料和另一种外壳材料复合而成。当树枝状介孔材料作为其中之一时,基于树枝状结构的核壳型纳米反应器应运而生,包括磁性核@树枝状壳、非磁性核@树枝状壳、树枝状核@介孔壳等多种类型。这些复合体兼备构成材料的物理化学特性,在重金属吸附、催化合成、分子检测、生物酶固定、药物递送等领域具有广泛的应用前景和优势。截至目前,还未出现介绍该类纳米材料的综述文章。因此,本文主要归纳分析树枝状核壳结构纳米反应器的分类,每种类型的结构特征、制备方法及应用领域,分析展望该学科今后的研究重点及发展前景。期望本综述能够给予材料和化学科学家一些参考,加速树枝状核壳结构纳米反应器的蓬勃发展。
Core-shell nanoreactors are composed of an inner core material and an outer shell one. When the dendritic mesoporous material serves as one component
dendritic-based core-shell nanoreactors can be developed
covering magnetic core@dendritic shell
non-magnetic core@dendritic shell
dendritic core@mesoporous shell
and so on. These composites combine physicochemical properties of the constituent entities and possess broad application prospects and advantages in multiple fields
like chemical adsorption of heavy metal
catalytic synthesis
molecular detection
enzyme immobilization
drug delivery
and so forth. Up to date
no review has been officially published with respect to this type of nanomaterial. This paper not only systematically categorizes dendritic core-shell nanoreactors and analyzes their structural characteristics
preparation methods
as well as application domains
but also outlines future research priorities and development prospects in this field. It is expected that this review could serve as a reference for material and chemical scientists
accelerating the vigorous development of dendritic-based core-shell nanoreactors.
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