CAS: 24621-21-4; Azanylidyneniobium

该化合物是一种无机化合物,其特点是金属特性和高熔点,通常看起来像灰粉或黑粉,以低温超导能力著称,在超导电子和量子计算等应用中具有价值.NbN表现出高硬度和极佳的热稳定性,有助于其在各种工业应用中发挥作用,包括涂层和高性能材料.该化合物还抗氧化,具有高热导力.就其晶体结构而言,NbN通常形成面心立方体,这对超导特性至关重要.此外,NbN可以通过各种方法合成,包括硝化铀和氮的直接反应或化学蒸气沉积技术.其独特的电气和热性结合使硝化铀成为先进材料研究和技术的焦点.

结构式图片

合成工艺路线路线简述

    📜叠氮化钠 反应生成氮化铌
    参考文献:Kaiehda,Josiya;Oieh,Masasi
    标题:Kaiehda,Josiya;Oieh,Masasi

    专利信息


    专利号:US-2024097109-A1
    优先权日:2021-02-11
    标 题:Bottom-Up, Scalable Synthesis Of Oxide-Based Sub-Nano And Nanofilaments And Nanofilament-Based Two-Dimensional Flakes And Mesoporous Powders
    发明人:BARSOUM MICHEL W; BADR HUSSEIN OSAMA
    权利人:UNIV DREXEL
    摘要:Provided are methods to convert—through a bottom-up approach—binary and ternary titanium carbides, nitrides, borides, phosphides, aluminides, and silicides into lepidocrocitic nanofilaments that in some cases self-assemble into 2D flakes by immersing them in a quaternary ammonium solution at moderate temperatures. The resulting flakes can comprise nanofilaments in cross-section, some of which nanofilaments can be few microns long in some instances.

    专利号:SI-23988-A
    优先权日:2012-02-22
    标题:Method for the synthesis of 4d and 5d (Nb, Mo, Ta, W) nitride transition metals in the form of quasi-one-dimensional structures

    专利号:CN-117042802-A
    优先权日:2021-02-11
    标题 :Bottom-up scalable synthesis of oxide-based subnanofilaments and nanofilaments and nanofilament-based two-dimensional flakes and mesoporous powders

    专利号:KR-20140053100-A
    优先权日:2011-06-27
    标 题 :METHOD FOR SYNTHESIS OF TRANSIENT METAL NITRIDE AND TRANSITION METAL NITRIDE

    专利号:US-11637276-B2
    优先权日:2018-05-17
    标 题:Molten fluid electrode apparatus with solid lithium iodide electrolyte having improved lithium ion transport characteristics
    发明人:VISSERS DANIEL R; BRAUN PAUL V
    权利人:VISSERS BATTERY CORP
    摘要:Performance of a thermal lithium battery is improved by improving the ion-transport characteristics of a solid lithium iodide electrolyte. The lithium iodide lattice of the solid electrolyte includes defects that improve the ion-transport characteristics of the solid lithium iodide electrolyte. In one example, the defects are due to the introduction of nanoparticles that result in grain boundary defects. The defects resulting at the grain boundaries with the nanoparticles improve the ion transport characteristics of the electrolyte. In another example, defects originating from the synthesis process are pinned by the presence of nanoparticles and/or the reinforcing structure. In another example, the defects are aliovalent substitution defects. A cation that is aliovalent to the lithium cation (Li+), such as a barium cation (Ba2+), creates an aliovalent substitution defect in the lithium iodide lattice. In order to maintain charge neutrality in the lattice, two lithium cations are replaced by a single barium cation creating the defect in the lattice.

    专利号:US-2024424465-A1
    优先权日:2021-11-15
    标题 :Tunable nanostructure formation methods and techniques exploiting ablation
    发明人:NECHACHE RIAD
    权利人:NECHACHE RIAD
    摘要:Nanoparticles have applications across medicine, physics, chemistry, biochemistry, agriculture, optics, electronics, renewable energy, textiles etc. Whilst several methods for creating nanoparticles, including inert gas condensation, attrition, chemical precipitation, ion implantation, radiolysis, pyrolysis and hydrothermal synthesis, exist these exhibit limitations. These limitations are exacerbated when considering coating processes of nanoparticles to generate core-shell nanoparticles. Accordingly, the invention provides a manufacturing methodology suitable for production of nanoparticles at a high yield whilst facilitating core-shell nanoparticles, core-shell nanoparticles with organic cores etc. and their related colloidal solutions and inks.

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