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尺寸可调的AgO多面体的生长及其体相和表面晶格的揭示

Growth of Size-Tunable AgO Polyhedra and Revelation of Their Bulk and Surface Lattices.

作者信息

Chang Pin-Shiuan, Chen Bo-Hao, Lin Yu-Chang, Dai Wan-Ting, Kumar Gautam, Lin Yan-Gu, Huang Michael H

机构信息

Department of Chemistry, National Tsing Hua University, Hsinchu, 300044, Taiwan.

National Synchrotron Radiation Research Center, Hsinchu, 300092, Taiwan.

出版信息

Small. 2024 Oct;20(40):e2401558. doi: 10.1002/smll.202401558. Epub 2024 Jun 3.

DOI:10.1002/smll.202401558
PMID:38829043
Abstract

By primarily adjusting the reagent amounts, particularly the volume of AgNO solution introduced, AgO cubes with decreasing sizes from 440 to 79 nm, octahedra from 714 to 106 nm, and rhombic dodecahedra from 644 to 168 nm are synthesized. 733 nm cuboctahedra are also prepared for structural analysis. With in-house X-ray diffraction (XRD) peak calibration, shape-related peak shifts are recognizable. Synchrotron XRD measurements at 100 K reveal the presence of bulk and surface layer lattices. Bulk cell constants also deviate slightly. They show a negative thermal expansion behavior with shrinking cell constants at higher temperatures. The AgO crystals exhibit size- and facet-dependent optical properties. Bandgaps red-shift continuously with increasing particle sizes. Optical facet effect is also observable. Moreover, synchrotron XRD peaks of a mixture of CuO rhombicuboctahedra and edge- and corner-truncated cubes exposing all three crystal faces can be deconvoluted into three components with the bulk and the [111] microstrain phase as the major component. Interestingly, while the unheated CuO sample shows clear diffraction peak asymmetry, annealing the sample to 450 K yields nearly symmetric peaks even when returning the sample to room temperature, meaning even moderately high temperatures can permanently change the crystal lattice.

摘要

通过主要调整试剂用量,特别是引入的硝酸银溶液的体积,合成了尺寸从440纳米减小到79纳米的氧化银立方体、从714纳米减小到106纳米的八面体以及从644纳米减小到168纳米的菱形十二面体。还制备了733纳米的立方八面体用于结构分析。通过内部X射线衍射(XRD)峰校准,可以识别与形状相关的峰位移。在100 K下的同步加速器XRD测量揭示了体相和表面层晶格的存在。体相晶胞常数也略有偏差。它们表现出负热膨胀行为,在较高温度下体相晶胞常数会收缩。氧化银晶体表现出尺寸和晶面依赖的光学性质。带隙随着粒径的增加而持续红移。光学晶面效应也可观察到。此外,由菱形立方八面体以及暴露所有三个晶面的棱边和角截断立方体组成的混合物的同步加速器XRD峰可以解卷积为三个成分,其中体相和[111]微应变相是主要成分。有趣的是,未加热的氧化铜样品显示出明显的衍射峰不对称性,而将样品退火至450 K,即使再回到室温也会产生几乎对称的峰,这意味着即使是适度的高温也能永久改变晶格。

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