CAS: 35725-34-9; Ytterbium(3+),Trinitrate,Pentahydrate

该化合物是一种无机化合物,配有Yb(NO3)35H2O的配方.这是一种晶状固体,通常以无色或白色晶体的形式出现.这种化合物在水中溶解,很容易分解到溶液中的离子和硝酸盐离子.Ytterbium,一种环乙酸盐系列的成员,显示出稀有土元素的典型特性,包括高原子数和相对高密度.五氢化物形式表明,五种水分子与每个配方体相关,有助于其稳定性和溶性.Ytterbium 硝酸五氢酸盐经常用于各种应用,包括材料科学,电子学和其他化合物合成中的前体.必须谨慎处理这一化合物,因为如果浸入或吸入,可能会对健康造成危害,因此在使用和储存过程中应采取适当的安全措施.

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    专利信息


    专利号:WO-2024123268-A1
    优先权日:2022-12-09
    标 题 :Production of silver nanoparticles by green synthesis using hazelnut husk extract
    发明人:AKDOGAN OZAN; GUNDUZ AKDOGAN NILAY; SIVRI DAMLA; KUREL ALI
    权利人:BAHCESEHIR UNIV; PIRI REIS UNIV
    摘要:The invention relates to synthesis of nanoparticles from hazelnut husk extract by green synthesis with high efficiency. Use of chemical is limited in the present invention and therefore the synthesis of nanoparticles is provided by green chemistry in the present invention. Said hazelnut may be Corylus and said hazelnut husk may be cob or shell of the hazelnut. In an embodiment of the invention said Corylus may be Colyrus colurna, Corylus americana Corylus avellana, Corylus avellana var. Avellana, Corylus avellana var. Pontica, Corylus chinensis, Corylus colchica, Corylus × colurnoides, Corylus cornuta, Corylus cornuta ssp. californica, Corylus cornuta ssp. cornuta, Corylus fargesii, Corylus ferox, Corylus ferox var. ferox, Corylus ferox var. thibetica, Corylus heterophylla, Corylus heterophylla var. heterophylla, Corylus heterophylla var. sutchuensis, Corylus jacquemontii, Corylus maxima, Corylus potaninii, Corylus sieboldiana, Corylus sieboldiana var. mandshurica, Corylus sieboldiana var. sieboldiana, Corylus wangii, Corylus wulingensis or Corylus yunnanensis.

    专利号:DE-69917914-T2
    优先权日:1998-09-18
    标题 :PRODUCTION OF COMBINATIONAL ARRAYS OF MATERIALS BY METHODS OF SYNTHESIS IN SOLUTION

    专利号:WO-2016203431-A1
    优先权日:2015-06-18
    标题 :Luminescent bismuth silicates, use and method for producing thereof
    发明人:BACK MICHELE; RIELLO PIETRO
    权利人:UNIVERSITA' CA' FOSCARI
    摘要:The present invention relates to luminescent compounds of lanthanide/Yb doped bismuth silicate that present a crystalline structure and are characterized by non-linear optical properties, particularly photon up-conversion following IR or NIR excitation. Furthermore, the present invention describes several synthesis routes for producing said compounds in different form (e.g. particles, core-shell particles, bulk crystal), dimension (e.g. nanoscale or microscale) and crystalline structure, which result in tunable optical properties in view of a specific application. Particularly, there are disclosed Er/ Yb, Ho/Yb, Tm/Yb doped bismuth silicate nanoparticles that emit up-conversion light of the three basic colors (RGB). As said compounds are non-cytotoxic and present attractive optical properties, they find a wide range of applications, both industrial (e.g. lighting, solar energy, anti-counterfeiting) and biomedical (e.g. drug delivery, bio-imaging, nanomedicine).

    专利号:EP-4630187-A1
    优先权日:2022-12-09
    标题 :Production of silver nanoparticles by green synthesis using hazelnut husk extract

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    合成参考文献


    参考文献:10.1007/978-3-030-79979-3_3
    摘要:Kondawar SB, Pangul CN, Haque MA. Polymer Nanofibers via Electrospinning for Flexible Devices. 2021. In: Springer Series on Polymer and Composite Materials.
    参考文献:10.1007/978-3-031-40809-0_9
    摘要:Okawa A, Nguyen ST, Nakayama T, Suematsu H, Goto T, Niihara K. Development of Silicates and Spraying Techniques for Environmental Barrier Coatings. 2023 Dec 06. In: Engineering Materials.
    参考文献:10.1007/s40846-023-00841-9
    摘要:Khan MY, Chen J, Jain V, Agrawal L, Lin CJ, Chen M. The Influence of Surface Modification on the Shortwave Infrared Emission of Rare-Earth-Doped Nanoparticles. J. Med. Biol. Eng. 2023 Dec 28;44(1):49–56. doi: 10.1007/s40846-023-00841-9.
    参考文献:10.1007/s00339-024-07334-9
    摘要:Deliormanlı AM, Ensoylu M, Atmaca H. Preparation of trivalent rare-earth element-substituted bioactive glass robocast scaffolds for osteosarcoma treatment: structural, morphological, mechanical, drug delivery, and biological properties. Appl. Phys. A. 2024 Feb 16;130(3). doi: 10.1007/s00339-024-07334-9.
    参考文献:10.1007/978-3-031-70428-4_32
    摘要:Benammar I, Messaoui S, Salhi R, Deschanvres J, Maalej R. Suspension Stability and Aggregation Kinetics of Sol-Gel Titania Nanoparticle Doped with Rare Earth (Er, Yb) Element: The Effect of pH and the Ultrasound. 2024. In: Lecture Notes in Mechanical Engineering.
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