CAS: 10022-68-1; Cadmium Nitrate Tetrahydrate

该化合物是一种晶状无机化合物,通常用于实验室和工业用途,水和乙醇中的高溶性使其成为合成镉基材料的多种前体,包括半导体,颜料和催化剂;四氢酸盐形式确保了在标准条件下的稳定性和方便处理;在电镀,玻璃制造和分析化学中特别重视其一贯纯度和可预见反应性;建议在冷干燥环境中适当储存以防止脱氧;由于镉的毒性,在处理过程中必须观察适当的安全措施,包括个人防护设备和通风.

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    专利信息


    专利号:US-7615169-B2
    优先权日:2004-09-20
    标题 :Method for synthesis of colloidal nanoparticles
    发明人:STROUSE GEOFFREY FIELDING; GERBEC JEFFREY A; MAGANA DONNY
    权利人:UNIV CALIFORNIA
    摘要:A method for synthesis of high quality colloidal nanoparticles using comprises a high heating rate process. Irradiation of single mode, high power, microwave is a particularly well suited technique to realize high quality semiconductor nanoparticles. The use of microwave radiation effectively automates the synthesis, and more importantly, permits the use of a continuous flow microwave reactor for commercial preparation of the high quality colloidal nanoparticles.

    专利号:US-7927516-B2
    优先权日:2004-09-20
    标题 :Method for synthesis of colloidal nanoparticles
    发明人:STROUSE GEOFFREY F; GERBEC JEFFREY A; MAGANA DONNY
    权利人:UNIV CALIFORNIA
    摘要:A method for synthesis of high quality colloidal nanoparticles using comprises a high heating rate process. Irradiation of single mode, high power, microwave is a particularly well suited technique to realize high quality semiconductor nanoparticles. The use of microwave radiation effectively automates the synthesis, and more importantly, permits the use of a continuous flow microwave reactor for commercial preparation of the high quality colloidal nanoparticles.

    专利号:US-10556798-B2
    优先权日:2017-01-13
    标题 :Synthesis of fluorinated graphene oxide for electrochemical applications
    发明人:CHEN AICHENG; SIDHUREDDY BOOPATHI; THIRUPPATHI ANTONY RAJ
    权利人:UNIV LAKEHEAD
    摘要:Doping and functionalization could significantly assist in the improvement of the electrochemical properties of graphene derivatives. Herein, we report a one-pot synthesis of fluorinated graphene oxide (FGO) from graphite. The surface morphology, functionalities and composition of the resulting FGO have been studied using various surface characterization techniques, revealing that layer-structured nanosheets with Ëœ1.0 at. % F were formed. The carbon bound F exhibited semi-ionic bonding characteristic and significantly increased the capacitance of FGO compared to graphene oxide (GO). Further, the FGO has been employed for the simultaneous detection of heavy metal ions Cd2+, Pb2+, Cu2+ and Hg2+ using square wave anodic stripping voltammetry; and a substantial improvement in the electrochemical sensing performance is achieved in comparison with GO.

    专利号:US-7880026-B2
    优先权日:2006-04-14
    标 题 :MOF synthesis method
    发明人:NI ZHENG; MASEL RICHARD I
    权利人:UNIV ILLINOIS
    摘要:A rapid, simple and versatile metal organic framework molecule (MOF) synthesis method particularly adapted to make non-linear MOFs includes heating MOF precursors, such as a metal or metal oxide and an organic ligand, in a microwave oven for a period sufficient to achieve crystallization. Microwave-assisted MOF synthesis yields high quality MOF crystals in a reaction time ranging from about 5 seconds to about 2.5 minutes, compared to hours and days required in conventional solvothermal and hydrothermal methods. In addition, microwave assisted methods provide MOF materials with uniform crystal size and well-defined shape. Further, microwave synthesis of MOFs allows the size and shape of MOF crystals to be tailored for use in a wide range applications by manipulating reaction conditions. Secondary growth processes may also be employed to grow larger crystals using seeds obtained from microwave-assisted synthesis methods.

    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:US-8137457-B2
    优先权日:2004-07-23
    标题 :One-pot synthesis of high-quality metal chalcogenide nanocrystals without precursor injection
    发明人:CAO YUNWEI CHARLES; CHEN OU
    权利人:CAO YUNWEI CHARLES; CHEN OU; UNIV FLORIDA
    摘要:A method of forming monodisperse metal chalcogenide nanocrystals without precursor injection, comprising the steps of: combining a metal source, a chalcogen oxide or a chalcogen oxide equivalent, and a fluid comprising a reducing agent in a reaction pot at a first temperature to form a liquid comprising assembly; increasing the temperature of the assembly to a sufficient-temperature to initiate nucleation to form a plurality of metal chalcogenide nanocrystals; and growing the plurality of metal chalcogenide nanocrystals without injection of either the metal source or the chalcogen oxide at a temperature equal to or greater than the sufficient-temperature, wherein crystal growth proceeds substantially without nucleation to form a plurality of monodisperse metal chalcogenide nanocrystals. Well controlled monodispersed CdSe nanocrystals of various sizes can be prepared by choice of the metal source and solvent system.

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    合成参考文献


    摘要:Sbornik Vysledku Toxixologickeho Vysetreni Latek A Pripravku, Marhold, J.V., Institut Pro Vychovu Vedoucicn Pracovniku Chemickeho Prumyclu Praha, Czechoslovakia, 1972, -(12), 1972
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