Zinc bromide - Ultra dry, 99.99% metals basis, high purity , CAS No.7699-45-8

Item Number
Z292530
Grouped product items
SKUSizeAvailabilityPrice Qty
Z292530-5g
5g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$433.90
Z292530-10g
10g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$755.90

Basic Description

Synonyms7699-45-8 | Zinc dibromide | zinc;dibromide | ZINCUM BROMATUM | OO7ZBU9703 | DTXSID8052512 | ZINCBROMIDE | 7899-45-8 | zinc (II) bromide | dibromozinc | ZINC BROMIDE [MI] | ZINC BROMIDE [HSDB] | ZINC BROMIDE [WHO-DD] | ZINCUM BROMATUM [HPUS] | DTXCID2031085 | VNDYJBBGRKZCSX-UHFFFAOYSA
Specifications & PurityPrimorTrace™, Ultra dry, ≥99.99% metals basis
Storage TempRoom temperature,Argon charged
Shipped InNormal
GradePrimorTrace™, Ultra dry
Product Description

Zinc bromide is an optimal catalyst for stereo specific and regioselective reaction of silacyclopropanes with carbonyl compounds. It is used as a transparent shield against radiation, as a fluid to displace drilling muds in transition phases, as a lewis acid in organic chemistry, colloidon emulsions for photography, a nutritional or functional ingredient in food and oral care products.

Names and Identifiers

IUPAC Name zinc;dibromide
INCHI InChI=1S/2BrH.Zn/h2*1H;/q;;+2/p-2
InChi Key VNDYJBBGRKZCSX-UHFFFAOYSA-L
Canonical SMILES [Zn+2].[Br-].[Br-]
Isomeric SMILES [Zn+2].[Br-].[Br-]
WGK Germany 3
RTECS ZH1150000
PubChem CID 10421208
UN Number 3077
Packing Group III
Molecular Weight 225.2

Certificates

Certificate of Analysis(COA)

Enter Lot Number to search for COA:

Find and download the COA for your product by matching the lot number on the packaging.

2 results found

Lot NumberCertificate TypeDateItem
C2313251Certificate of AnalysisDec 12, 2024 Z292530
C2313252Certificate of AnalysisDec 12, 2024 Z292530

Chemical and Physical Properties

SolubilitySoluble in water, ethanol, ether, 90% alcohol.
SensitivityHygroscopic.
Refractive Index1.5452
Boil Point(°C)697°C
Melt Point(°C)394°C

Safety and Hazards(GHS)

Pictogram(s) GHS09,   GHS05,   GHS07
Signal Danger
Hazard Statements

H411:Toxic to aquatic life with long lasting effects

H314:Causes severe skin burns and eye damage

H302:Harmful if swallowed

H318:Causes serious eye damage

H317:May cause an allergic skin reaction

H400:Very toxic to aquatic life

H410:Very toxic to aquatic life with long lasting effects

Precautionary Statements

P261:Avoid breathing dust/fume/gas/mist/vapors/spray.

P273:Avoid release to the environment.

P280:Wear protective gloves/protective clothing/eye protection/face protection.

P302+P352:IF ON SKIN: wash with plenty of water.

P321:Specific treatment (see ... on this label).

P405:Store locked up.

P501:Dispose of contents/container to ...

P264:Wash hands [and …] thoroughly after handling.

P260:Do not breathe dust/fume/gas/mist/vapors/spray.

P270:Do not eat, drink or smoke when using this product.

P301+P330+P331:IF SWALLOWED: Rinse mouth. Do NOT induce vomiting.

P304+P340:IF INHALED: Remove person to fresh air and keep comfortable for breathing.

P363:Wash contaminated clothing before reuse.

P272:Contaminated work clothing should not be allowed out of the workplace.

P333+P313:IF SKIN irritation or rash occurs: Get medical advice/attention.

P362+P364:Take off contaminated clothing and wash it before reuse.

P391:Collect spillage.

P330:Rinse mouth.

P264+P265:Wash hands [and …] thoroughly after handling. Do not touch eyes.

P301+P317:IF SWALLOWED: Get medical help.

P305+P354+P338:IF IN EYES: Immediately rinse with water for several minutes. Remove contact lenses if present and easy to do. Continue rinsing.

P317:Get emergency medical help.

P302+P361+P354:IF ON SKIN: Take off Immediately all contaminated clothing. Immediately rinse with water for several minutes.

P316:Get emergency medical help immediately.

WGK Germany 3
RTECS ZH1150000
Class 9
Merck Index 1029
RIDADR UN3260 - class 8 - PG 3 - MP - RQ - Corrosive solid, acidic, inorganic, n.o.s., HI: all

Related Documents

Citations of This Product

1. Li Hui, Zhang Jiachen, Zhang Qun.  (2023)  Manipulation of hot-carrier cooling dynamics in CsPbBr3 quantum dots via site-selective ligand engineering.  JOURNAL OF CHEMICAL PHYSICS,  159  (21):   [PMID:38047513] [10.1063/5.0175915]
2. Rui Wang.  (2023)  Bi-layer graphite felt as the positive electrode for zinc-bromine flow batteries: Achieving efficient redox reaction and stable mass transport.  Journal of Energy Storage,  74  (1): (109487).  [PMID:11823430] [10.1016/j.est.2023.109487]
3. Sibo Zhao, Hengbin Mao, Weishan Ma, Mingliang Li, Shao Gang, Bingbing Fan, Hailong Wang, Hongliang Xu, Hongxia Lu.  (2023)  Enhanced luminescence stability of high-entropy dual-phase Cs(Pb1/5Mn1/5Ni1/5Zn1/5Cd1/5)Br3/Cs(Pb1/5Mn1/5Ni1/5Zn1/5Cd1/5)2Br5 perovskite nanocrystals coated with SiO2 and EVA.  CERAMICS INTERNATIONAL,    (6):   [PMID:7991565] [10.1016/j.ceramint.2023.10.257]
4. Zizhao Fu, Hanxu Lu, Hong Liu, Yifeng Xing, Zhiyan Piao, Hanqing Dai, Wanlu Zhang, Ruiqian Guo.  (2023)  A facile synthesis of highly efficient and widely emission tunable quintuple CuZnGaSSe quantum dots.  Applied Materials Today,  34  (29): (101922).  [PMID:15355975] [10.1016/j.apmt.2023.101922]
5. Shiwei Xue, Hengbin Mao, Junhui Li, Xinge Sun, Ziyu Gong, Bingbing Fan, Gang Shao, Hailong Wang, Hongliang Xu, Rui Zhang, Hongxia Lu.  (2023)  One-step synthesis of all-inorganic high-entropy dual-phase Cs‘B’Br3/Cs‘B’2Br5 perovskite nanocrystals by high-energy ball milling.  CERAMICS INTERNATIONAL,  49  (35202).  [PMID:] [10.1016/j.ceramint.2023.08.193]
6. Kaiwang Chen, Dengliang Zhang, Qing Du, Wei Hong, Yue Liang, Xingxing Duan, Shangwei Feng, Linfeng Lan, Lei Wang, Jiangshan Chen, Dongge Ma.  (2023)  Synergistic Halide- and Ligand-Exchanges of All-Inorganic Perovskite Nanocrystals for Near-Unity and Spectrally Stable Red Emission.  Nanomaterials,  13  (16): (2337).  [PMID:37630921] [10.3390/nano13162337]
7. Keqiang Chen, Zixin Gu, Zhiqing Wang, Mengyu Guan, Xiu Tan, Wanqing Xu, Xinyu Ji, Weiqi Lu, Yueli Liu, Guogang Li.  (2023)  Surface polarization-induced emission and stability enhancement of CsPbX3 nanocrystals.  Chemical Science,  14  (33): (8914-8923).  [PMID:37621427] [10.1039/D3SC02109B]
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19. Wanlong Wu, Xianpeng Yang, Kuo Wang, Zirui Lin, Hua-Yu Shi, Xiaoqi Sun.  (2022)  Inducing the Solid–Liquid Conversion of Zinc Metal Anode in Alkaline Electrolytes by a Complexing Agent.  ADVANCED FUNCTIONAL MATERIALS,  32  (45): (2207397).  [PMID:] [10.1002/adfm.202207397]
20. Yicheng Zeng, Weiwei Chen, Yuan Deng, Wanying Gu, Chenxi Wu, Yating Guo, Pan Huang, Fangze Liu, Hongbo Li.  (2022)  FAPbBr3/Cs4PbBr6 Core/Shell Perovskite Nanocrystals with Enhanced Stability and Emission: Implications for LEDs.  ACS Applied Nano Materials,  (7): (9534–9543).  [PMID:] [10.1021/acsanm.2c01772]
21. Yingling Zhong, Yuandong Wu, Dajiang Mei, Shaoguo Wen, Thomas Doert.  (2022)  Synthesis, crystal structures and luminescent properties of three layered zinc complexes: Zn(1,10-phen)mI2 (m = 1, 2) and Zn2(1,10-phen)2C2O4Br2 (phen = phenanthroline).  JOURNAL OF MOLECULAR STRUCTURE,  1265  (133489).  [PMID:] [10.1016/j.molstruc.2022.133489]
22. Shicheng Xu, Wanlong Wu, Ruiying Wan, Wei Wei, Yujiao Li, Jin Wang, Xiaoqi Sun, Ronghuan He.  (2022)  Tailoring the molecular structure of pyridine-based polymers for enhancing performance of anion exchange electrolyte membranes.  RENEWABLE ENERGY,  194  (366).  [PMID:] [10.1016/j.renene.2022.05.071]
23. Siyang Liu, Jing Wu, Jiaqi Huang, Xiaowei Chi, Jianhua Yang, Yu Liu.  (2022)  A high-energy efficiency static membrane-free zinc–bromine battery enabled by a high concentration hybrid electrolyte.  Sustainable Energy & Fuels,  (4): (1148-1155).  [PMID:] [10.1039/D1SE01749G]
24. Liubing Fan, Ke Liu, Shihui He, Fangyi Zhao, Jing Zhao, Yonggang Wang, Quanlin Liu.  (2021)  Reversible Mechanically Induced On–Off Photoluminescence in Hybrid Metal Halides.  ADVANCED FUNCTIONAL MATERIALS,  32  (13): (2110771).  [PMID:] [10.1002/adfm.202110771]
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27. Zhu Chen, Qian Wang, Yinyan Xu, Lun Zhang, Akang Yang, Ru Zhou, Hongbo Lu, Mei Lyu, Jun Zhu.  (2021)  Enhancing the performance of CsPbIBr2 solar cells through zinc halides doping.  SYNTHETIC METALS,  281  (116918).  [PMID:] [10.1016/j.synthmet.2021.116918]
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35. Xinliang Li, Na Li, Zhaodong Huang, Ze Chen, Yuwei Zhao, Guojin Liang, Qi Yang, Mian Li, Qing Huang, Binbin Dong, Jun Fan, Chunyi Zhi.  (2021)  Confining Aqueous Zn–Br Halide Redox Chemistry by Ti3C2TX MXene.  ACS Nano,  15  (1): (1718–1726).  [PMID:33435679] [10.1021/acsnano.0c09380]
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37. Lu Han, Hailong Huang, Junfeng Li, Xinlu Zhang, Zhongli Yang, Min Xu, Likun Pan.  (2020)  A novel redox bromide-ion additive hydrogel electrolyte for flexible Zn-ion hybrid supercapacitors with boosted energy density and controllable zinc deposition.  Journal of Materials Chemistry A,  (30): (15042-15050).  [PMID:] [10.1039/D0TA03547E]
38. Jinyuan Zhang, Huaimin Gu.  (2020)  Growth of InZnP/ZnS core/shell quantum dots with wide-range and refined tunable photoluminescence wavelengths.  DALTON TRANSACTIONS,  49  (18): (6119-6126).  [PMID:32323683] [10.1039/D0DT00575D]
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References

1. Saisai Li, Yun Huang, Wenhao Ren, Xing Li, Mingshan Wang, Haijun Cao .  (2021)  Stabilize lithium metal anode through in-situ forming a multi-component composite protective layer.  Chemical Engineering Journal ,  422  (2021): (129911).  [PMID:] [ 10.1016/j.cej.2021.129911]
2. Li Hui, Zhang Jiachen, Zhang Qun.  (2023)  Manipulation of hot-carrier cooling dynamics in CsPbBr3 quantum dots via site-selective ligand engineering.  JOURNAL OF CHEMICAL PHYSICS,  159  (21):   [PMID:38047513] [10.1063/5.0175915]
3. Rui Wang.  (2023)  Bi-layer graphite felt as the positive electrode for zinc-bromine flow batteries: Achieving efficient redox reaction and stable mass transport.  Journal of Energy Storage,  74  (1): (109487).  [PMID:11823430] [10.1016/j.est.2023.109487]
4. Sibo Zhao, Hengbin Mao, Weishan Ma, Mingliang Li, Shao Gang, Bingbing Fan, Hailong Wang, Hongliang Xu, Hongxia Lu.  (2023)  Enhanced luminescence stability of high-entropy dual-phase Cs(Pb1/5Mn1/5Ni1/5Zn1/5Cd1/5)Br3/Cs(Pb1/5Mn1/5Ni1/5Zn1/5Cd1/5)2Br5 perovskite nanocrystals coated with SiO2 and EVA.  CERAMICS INTERNATIONAL,    (6):   [PMID:7991565] [10.1016/j.ceramint.2023.10.257]
5. Zizhao Fu, Hanxu Lu, Hong Liu, Yifeng Xing, Zhiyan Piao, Hanqing Dai, Wanlu Zhang, Ruiqian Guo.  (2023)  A facile synthesis of highly efficient and widely emission tunable quintuple CuZnGaSSe quantum dots.  Applied Materials Today,  34  (29): (101922).  [PMID:15355975] [10.1016/j.apmt.2023.101922]
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Solution Calculators