中文名 | 氯化亚铁四水合物 |
英文名 | Ferrous chloride tetrahydrate |
别名 | 氯化亞鐵 二氯化鐵 氯化铁四水合物 氯化亚铁,四水 氯化亚铁四水合物 氯化铁(II)四水合物 氯化亚铁(II)四水合物 氯化亚铁 (II) 四水合物 四水合氯化亚铁 |
英文别名 | Ferrous Chloride Iron(2+) Dichloride Iron Chloride Dihydrate IRON (II) CHLORIDE 4H2O Iron(Ii)Chloride Hydrate Ironchloridetetrahydrate Ferrous Chloride, Hydrated Irondichloridetetrahydrate Iron(Ii) Chloride N-Hydrate Ferrous chloride tetrahydrate Iron(Ii) Chloride Tetrahydrate Ferrous Chloride, Tetrahydrate, GR IRON(II) CHLORIDE TETRAHYDRATE FOR ANALY |
CAS | 13478-10-9 |
EINECS | 603-870-5 |
化学式 | Cl2FeH2O |
分子量 | 144.76 |
InChI | InChI=1/ClH.Fe.4H2O/h1H;;4*1H2/q;+2;;;;/p-1 |
InChIKey | WSSMOXHYUFMBLS-UHFFFAOYSA-L |
密度 | 1.93 |
熔点 | 105 °C |
沸点 | 1026 °C |
水溶性 | soluble |
蒸汽压 | 10 mm Hg ( 693 °C) |
溶解度 | 1600g/l |
PH值 | 2.5 (100g/l, H2O, 20℃) |
存储条件 | Store at +15°C to +25°C. |
稳定性 | 对空气、湿气和光线敏感。与强氧化剂不相容,最常见的金属。 |
敏感性 | Air Sensitive |
外观 | 固体 |
比重 | 1.93 |
颜色 | Yellow to green |
Merck | 14,4043 |
暴露限值 | ACGIH: TWA 1 mg/m3NIOSH: TWA 1 mg/m3 |
物化性质 | 蒸汽压:10 mm Hg ( 693℃) WGK Germany:1 RTECS:NO5600000 |
MDL号 | MFCD00149709 |
危险品标志 | Xn - 有害物品 C - 腐蚀性物品 |
风险术语 | R22 - 吞食有害。 R38 - 刺激皮肤。 R41 - 对眼睛有严重伤害。 R34 - 引起灼伤。 |
安全术语 | S26 - 不慎与眼睛接触后,请立即用大量清水冲洗并征求医生意见。 S39 - 戴护目镜或面具。 S45 - 若发生事故或感不适,立即就医(可能的话,出示其标签)。 S36/37/39 - 穿戴适当的防护服、手套和护目镜或面具。 |
危险品运输编号 | UN 3260 8/PG 3 |
WGK Germany | 1 |
RTECS | NO5600000 |
FLUKA BRAND F CODES | 3-23 |
TSCA | Yes |
海关编号 | 28273300 |
Hazard Class | 8 |
Packing Group | III |
下游产品 | 二甲基二茂铁 |
参考资料 展开查看 | 1. Yueyue Tian, Yancao Chen, Mei Chen, Zhi-Ling Song, Bin Xiong, Xiao-Bing Zhang, Peroxidase-like Au@Pt nanozyme as an integrated nanosensor for Ag+ detection by LSPR spectroscopy, Talanta, Volume 221, 2021, 121627, ISSN 0039-9140, https://doi.org/10.1016/j.t 2. Zheng, Yuan-Yuan, et al. "Controllable synthesis of monodispersed iron oxide nanoparticles by an oxidation-precipitation combined with solvothermal process." Materials Chemistry and Physics 252 (2020): 123431.https://doi.org/10.1016/j.matchemphys.2020.1234 3. [IF=7.79] Kai Jiang et al."A facile and efficient approach for hypertrophic scar therapy via DNA-based transdermal drug delivery."Nanoscale. 2020 Sep;12(36):18682-18691 4. [IF=7.664] Lizhu Guan et al."Bimetallic organic framework NiFeMOF driven by tiny Ag particles for PVDF dielectric composites."Compos Part A-Appl S. 2021 Aug;147:106432 5. [IF=7.514] Hang Jia et al."One-pot synthesis of magnetic self-assembled carrageenan-ε-polylysine composites: A reusable and effective antibacterial agent against Alicyclobacillus acidoterrestris."Food Chem. 2021 Oct;360:130062 6. [IF=6.558] Supan Cheng et al."Detection of bleomycin and its hydrolase by the cationic surfactant-doped liquid crystal-based sensing platform."Anal Chim Acta. 2021 Mar;1150:338247 7. [IF=6.119] Peng Jin et al."Efficient bioconversion of high-concentration D-fructose into D-mannose by a novel N-acyl-D-glucosamine 2-epimerase from Thermobifida halotolerans."Catal Sci Technol. 2021 Mar;11(5):1922-1930 8. [IF=6.057] Yueyue Tian et al."Peroxidase-like Au@Pt nanozyme as an integrated nanosensor for Ag+ detection by LSPR spectroscopy."Talanta. 2021 Jan;221:121627 9. [IF=4.094] Yuan-Yuan Zheng et al."Controllable synthesis of monodispersed iron oxide nanoparticles by an oxidation-precipitation combined with solvothermal process."Mater Chem Phys. 2020 Sep;252:123431 10. [IF=3.605] Ming Yang et al."Fenton Reaction-Modified Corn Stover To Produce Value-Added Chemicals by Ultralow Enzyme Hydrolysis and Maleic Acid and Aluminum Chloride Catalytic Conversion."Energ Fuel. 2019;33(7):6429–6435 11. [IF=6.953] Hang Jia et al."Silver nanoparticles anchored magnetic self-assembled carboxymethyl cellulose-ε-polylysine hybrids with synergetic antibacterial activity for wound infection therapy."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES. 2022 May;: |
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