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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Selective Covalent Modification of Layered Double Hydroxide Nanoparticles with Tripodal Ligands on Outer and Interlayer Surfaces
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Selective Covalent Modification of Layered Double Hydroxide Nanoparticles with Tripodal Ligands on Outer and Interlayer Surfaces

机译:具有外层间表面三架配体的层状双氢氧化物纳米粒子的选择性共价改性

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摘要

Layered double hydroxides (LDHs) have occupied an important place in the fields of catalysts, electrocatalysts, and fillers, and their applicability can be greatly enhanced by interlayer organic modifications. In contrast to general organic modification based on noncovalent modification using ionic organic species, this study has clarified in situ interlayer covalent modification of LDH nanoparticles (LDHNPs) with the tripodal ligand tris(hydroxymethyl)-aminomethane (Tris-NH2). Interlayer-modified CoAl LDHNPs were obtained by a one-pot hydrothermal treatment of an aqueous solution containing metal salts and Tris-NH2 at 180 degrees C for 24 h. Tris-NH2 was covalently bonded on the interlayer surface of LDHNPs. Interlayer-modified NiAl LDHNPs were also similarly synthesized. Some comparative experiments under different conditions indicate that the important parameters for interlayer modification are the number of bonding sites per a modifier, the electronegativity of a constituent divalent metal element, and the concentration of a modifier; this is because these parameters affect the hydrolytic stability of alkoxy-metal bonds between a modifier and a layer of LDHNPs. The synthesis of interlayer-modified MgAI LDHNPs was achieved by adjusting these parameters. This achievement will enable new potential applications because modification of only the outer surface has been achieved until now. Interlayer-modified LDHNPs possessing CO32- in the interlayer space were delaminated into monolayers under ultrasonication in water. The proposed method provides a rational approach for interlayer modification and facile delamination of LDHNPs.
机译:层状双氢氧化物(LDH)占据了催化剂,电催化剂和填料领域的重要位置,并且通过层间有机改性,可以大大提高它们的适用性。与基于使用离子有机物种的非共价改性的一般有机改性相比,该研究阐明了利用三翼氏型 - 三肽三(羟甲基) - 氨基甲烷(Tris-NH2)的LDH纳米颗粒(LDHNP)的原位中间层共价改性。通过在180℃下含有金属盐和Tris-NH 2的水溶液的单壶水溶液获得层间改性煤LDHNPS。在LDHNPS的层间表面上共价键合Tris-NH 2。层间改性的Nial LD​​HNPS也类似地合成。在不同条件下的一些比较实验表明层间修饰的重要参数是每个改性剂的键合位点,构成二价金属元素的电负性和改性剂的浓度;这是因为这些参数影响了改性剂和LDHNP层之间的烷氧基金属键的水解稳定性。通过调节这些参数来实现层间改性的Mgai LDHNPS的合成。这一成就将实现新的潜在应用,因为直到现在地实现了外表面的修改。具有CO32-中间体空间中的层间改性的LDHNP分层在水中的超声中分解成单层。该方法提供了LDHNPS中层间改性和体内分层的合理方法。

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