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钙钛矿LaNiO_(3)热烧结过程中相转变机理的研究
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作者 刘涵钰 朱柳 +4 位作者 张宇中 陈越 史博文 胡阳 彭勇 《电子显微学报》 CAS CSCD 北大核心 2024年第1期18-28,共11页
本文针对钙钛矿结构的LaNiO_(3)在热烧结过程中物相转变机制,利用离位及原位电镜结合宏观光谱进行了观测和分析研究。实验结果表明,通过静电纺丝法制备的PVP/PAN/Ni(NO_(3))_(2)/La(NO_(3))_(3)前驱体纤维能够通过高温烧结形成LaNiO3的... 本文针对钙钛矿结构的LaNiO_(3)在热烧结过程中物相转变机制,利用离位及原位电镜结合宏观光谱进行了观测和分析研究。实验结果表明,通过静电纺丝法制备的PVP/PAN/Ni(NO_(3))_(2)/La(NO_(3))_(3)前驱体纤维能够通过高温烧结形成LaNiO3的钙钛矿结构。研究发现在温度作用下,晶体生长过程中碳聚合物基体不断受热分解,浸渍在聚合物基体上的金属离子受热与气氛中的氧结合,形成氧化物晶胚,呈现典型的奥斯瓦尔德熟化生长过程,在600℃左右,LaNiO_(3)的晶体相生成,随着温度的进一步升高,晶粒互相融合形成了纳米颗粒堆垛成的一维LaNiO_(3)纳米线。实验揭示了LaNiO_(3)纳米线的微观生长机制,为材料的生长调控和性能改性提供了思路。 展开更多
关键词 钙钛矿结构 物相转变 奥斯瓦尔德熟化生长 原位电子显微学
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Preparation of hollow spherical covalent organic frameworks via Oswald ripening under ambient conditions for immobilizing enzymes with improved catalytic performance
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作者 Hao Zhao Guanhua Liu +6 位作者 Yunting Liu Liya Zhou Li Ma Ying He Xiaobing Zheng Jing Gao Yanjun Jiang 《Nano Research》 SCIE EI CSCD 2023年第1期281-289,共9页
The hollow spherical covalent organic frameworks(COFs)have a wide application prospect thanks to their special structures.However,the controllable synthesis of uniform and stable hollow COFs is still a challenge.We he... The hollow spherical covalent organic frameworks(COFs)have a wide application prospect thanks to their special structures.However,the controllable synthesis of uniform and stable hollow COFs is still a challenge.We herein propose a self-templated method for the preparation of hollow COFs through the Ostwald ripening mechanism under ambient conditions,which avoids most disadvantages of the commonly used hard-templating and soft-templating methods.A detailed time-dependent study reveals that the COFs are transformed from initial spheres to hollow spheres because of the inside-out Ostwald ripening process.The obtained hollow spherical COFs have high crystallinity,specific surface area(2,036 m^(2)·g^(−1)),stability,and single-batch yield.Thanks to unique hollow structure,clear through holes,and hydrophobic pore environment of the hollow spherical COFs,the obtained immobilized lipase(BCL@H-COF-OMe)exhibits higher thermostability,polar organic solvent tolerance,and reusability.The BCL@H-COF-OMe also shows higher catalytic performance than the lipase immobilized on non-hollow COF and free lipase in the kinetic resolution of secondary alcohols.This study provides a simple approach for the preparation of hollow spherical COFs,and will promote the valuable research of COFs in the field of biocatalysis. 展开更多
关键词 hollow spherical structure covalent organic framework oswald ripening mechanism LIPASE kinetic resolution
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