Zinc acetylacetonate hydrate - 97%, high purity , CAS No.108503-47-5

  • ≥97%
Item Number
Z106186
Grouped product items
SKUSizeAvailabilityPrice Qty
Z106186-25g
25g
8
$25.90
Z106186-100g
100g
9
$79.90
Z106186-500g
500g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$272.90

Basic Description

Synonymshydrate | zinc;(Z)-4-oxopent-2-en-2-olate;hydrate | Zinc acetylacetonate xhydrate | Zinc acetylacetonate hydrate | Zincacetylacetonatexhydrate
Specifications & Purity≥97%
Shipped InNormal
Product Description

Zinc acetylacetonate hydrate (Zn(acac)2) is a hydrated metal organic complex that is hygroscopic in nature. It is majorly used as a precursor for the synthesis of zinc based nano and microparticles.

AI Insight

Names and Identifiers

Pubchem Sid488202752
Pubchem Sid Urlhttps://pubchem.ncbi.nlm.nih.gov/substance/488202752
IUPAC Name zinc;(Z)-4-oxopent-2-en-2-olate;hydrate
INCHI InChI=1S/2C5H8O2.H2O.Zn/c2*1-4(6)3-5(2)7;;/h2*3,6H,1-2H3;1H2;/q;;;+2/p-2/b2*4-3-;;
InChi Key KUJHAYOLESEVSA-SUKNRPLKSA-L
Canonical SMILES CC(=CC(=O)C)[O-].CC(=CC(=O)C)[O-].O.[Zn+2]
Isomeric SMILES C/C(=C/C(=O)C)/[O-].C/C(=C/C(=O)C)/[O-].O.[Zn+2]
WGK Germany 1
Alternate CAS 14024-63-6
PubChem CID 131675103
Molecular Weight 263.61 (anhydrous basis)
Beilstein 4166200

Certificates(CoA,COO,BSE/TSE and Analysis Chart)

C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

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

9 results found

Lot NumberCertificate TypeDateItem
F2109292Certificate of AnalysisMar 04, 2025 Z106186
A2507023Certificate of AnalysisMar 03, 2022 Z106186
E2309043Certificate of AnalysisMar 03, 2022 Z106186
E2309056Certificate of AnalysisMar 03, 2022 Z106186
H2206222Certificate of AnalysisMar 03, 2022 Z106186
H2206224Certificate of AnalysisMar 03, 2022 Z106186
H2206225Certificate of AnalysisMar 03, 2022 Z106186
I2405023Certificate of AnalysisMar 03, 2022 Z106186
F2109289Certificate of AnalysisJun 16, 2021 Z106186

Safety and Hazards(GHS)

Pictogram(s) GHS07
Signal Warning
Hazard Statements

H315:Causes skin irritation

H319:Causes serious eye irritation

H335:May cause respiratory irritation

Precautionary Statements

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

P305+P351+P338:IF IN EYES: Rinse cautiously with water for several minutes. Remove contact lenses if present and easy to do - continue rinsing.

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.

P271:Use only outdoors or in a well-ventilated area.

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

P403+P233:Store in a well-ventilated place. Keep container tightly closed.

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

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

P337+P317:If eye irritation persists: Get medical help.

P332+P317:If skin irritation occurs: Get medical help.

P319:Get medical help if you feel unwell.

WGK Germany 1

Related Documents

Reviews

Customer Reviews

Citations of This Product

1. Weiming Yang, Quanxi Yi, Fanqi Liu, Xianjie Pan, Yanning Zeng.  (2023)  Fabrication of malleable, repairable, weldable, recyclable and robust epoxy vitrimers from itaconic acid for recycled adhesion.  EUROPEAN POLYMER JOURNAL,  196  (112278).  [PMID:] [10.1016/j.eurpolymj.2023.112278]
2. Hugang Zhang, Xinmiao Li, Yile Wang, Kai Deng, Hongjie Yu, You Xu, Hongjing Wang, Ziqiang Wang, Liang Wang.  (2023)  Porous PdZn bimetallene for oxygen reduction electrolysis.  APPLIED CATALYSIS B-ENVIRONMENTAL,  338  (123006).  [PMID:] [10.1016/j.apcatb.2023.123006]
3. Yang Zhao, Menglin Zhao, Anyang Wang, Zhengping Chang, Zhongqi Wang, Ke Zhang.  (2023)  Experimental study on the mode Ι interlaminar properties of self-healable vitrimeric CFRP with various interfaces.  COMPOSITES PART B-ENGINEERING,  261  (110806).  [PMID:] [10.1016/j.compositesb.2023.110806]
4. Zhiqiang Chen, Chenyu Jin, Zhen Li, Xiuzhao Li, Liuyu Yang, Tiejun Wang.  (2023)  Tough Epoxy Vitrimer with Hybrid Networks and Its Applications in Reprocessable Composites.  ADVANCED ENGINEERING MATERIALS,  25  (13): (2300031).  [PMID:] [10.1002/adem.202300031]
5. T. Hu, H. Cheng, D. Yang, K. Shao, Y. Teng, Z. Pan.  (2023)  In-situ formation of oleic acid amide ligand boosts persistent luminescence of zinc gallate nanoparticles toward efficient latent fingermark detection.  Materials Today Chemistry,  30  (101485).  [PMID:] [10.1016/j.mtchem.2023.101485]
6. Jichao Wang, Somboon Chaemchuen, Nikom Klomkliang, Francis Verpoort.  (2021)  In Situ Thermal Solvent-Free Synthesis of Zeolitic Imidazolate Frameworks with High Crystallinity and Porosity for Effective Adsorption and Catalytic Applications.  CRYSTAL GROWTH & DESIGN,  21  (9): (5349–5359).  [PMID:] [10.1021/acs.cgd.1c00648]
7. Wei Wei, Huihui Hu, Linlin Chen, Zaoxue Yan, Xuelin Fan, Junjie Wang, Yuanguo Xu, Jimin Xie.  (2020)  Size-controllable synthesis of zinc ferrite/reduced graphene oxide aerogels: efficient electrochemical sensing of p-nitrophenol.  NANOTECHNOLOGY,  31  (43): (435706).  [PMID:32559756] [10.1088/1361-6528/ab9e91]
8. Fengxia Wu, Kamel Eid, Aboubakr M. Abdullah, Wenxin Niu, Chao Wang, Yixiang Lan, Ahmed A. Elzatahry, Guobao Xu.  (2020)  Unveiling One-Pot Template-Free Fabrication of Exquisite Multidimensional PtNi Multicube Nanoarchitectonics for the Efficient Electrochemical Oxidation of Ethanol and Methanol with a Great Tolerance for CO.  ACS Applied Materials & Interfaces,  12  (28): (31309–31318).  [PMID:32538605] [10.1021/acsami.0c01668]
9. Hongtao Cao, Beijun Liu, Yiwen Ye, Yunfang Liu, Peng Li.  (2019)  Reconstruction of the Microstructure of Cyanate Ester Resin by Using Prepared Cyanate Ester Resin Nanoparticles and Analysis of the Curing Kinetics Using the Avrami Equation of Phase Change.  Applied Sciences-Basel,  (11): (2365).  [PMID:] [10.3390/app9112365]
10. Qin Li, Hui Li, Runming Wang, Guangfang Li, Hao Yang, Rong Chen.  (2013)  Controllable microwave and ultrasonic wave combined synthesis of ZnO micro-/nanostructures in HEPES solution and their shape-dependent photocatalytic activities.  JOURNAL OF ALLOYS AND COMPOUNDS,  567  (1).  [PMID:] [10.1016/j.jallcom.2013.03.077]
11. Mengwei Chen,Jiaojiao Wu,Peng Ning,Jingjing Wang,Zuan Ma,Liqun Huang,Gustavo R Plaza,Yajing Shen,Chang Xu,Yu Han,Maciej S Lesniak,Zhongmin Liu,Yu Cheng.  (2019-12-24)  Remote Control of Mechanical Forces via Mitochondrial-Targeted Magnetic Nanospinners for Efficient Cancer Treatment..  Small (Weinheim an der Bergstrasse, Germany),  16  ((3)): (e1905424-e1905424).  [PMID:31867877]

References

1. Weiming Yang, Quanxi Yi, Fanqi Liu, Xianjie Pan, Yanning Zeng.  (2023)  Fabrication of malleable, repairable, weldable, recyclable and robust epoxy vitrimers from itaconic acid for recycled adhesion.  EUROPEAN POLYMER JOURNAL,  196  (112278).  [PMID:] [10.1016/j.eurpolymj.2023.112278]
2. Hugang Zhang, Xinmiao Li, Yile Wang, Kai Deng, Hongjie Yu, You Xu, Hongjing Wang, Ziqiang Wang, Liang Wang.  (2023)  Porous PdZn bimetallene for oxygen reduction electrolysis.  APPLIED CATALYSIS B-ENVIRONMENTAL,  338  (123006).  [PMID:] [10.1016/j.apcatb.2023.123006]
3. Yang Zhao, Menglin Zhao, Anyang Wang, Zhengping Chang, Zhongqi Wang, Ke Zhang.  (2023)  Experimental study on the mode Ι interlaminar properties of self-healable vitrimeric CFRP with various interfaces.  COMPOSITES PART B-ENGINEERING,  261  (110806).  [PMID:] [10.1016/j.compositesb.2023.110806]
4. Zhiqiang Chen, Chenyu Jin, Zhen Li, Xiuzhao Li, Liuyu Yang, Tiejun Wang.  (2023)  Tough Epoxy Vitrimer with Hybrid Networks and Its Applications in Reprocessable Composites.  ADVANCED ENGINEERING MATERIALS,  25  (13): (2300031).  [PMID:] [10.1002/adem.202300031]
5. T. Hu, H. Cheng, D. Yang, K. Shao, Y. Teng, Z. Pan.  (2023)  In-situ formation of oleic acid amide ligand boosts persistent luminescence of zinc gallate nanoparticles toward efficient latent fingermark detection.  Materials Today Chemistry,  30  (101485).  [PMID:] [10.1016/j.mtchem.2023.101485]
6. Jichao Wang, Somboon Chaemchuen, Nikom Klomkliang, Francis Verpoort.  (2021)  In Situ Thermal Solvent-Free Synthesis of Zeolitic Imidazolate Frameworks with High Crystallinity and Porosity for Effective Adsorption and Catalytic Applications.  CRYSTAL GROWTH & DESIGN,  21  (9): (5349–5359).  [PMID:] [10.1021/acs.cgd.1c00648]
7. Wei Wei, Huihui Hu, Linlin Chen, Zaoxue Yan, Xuelin Fan, Junjie Wang, Yuanguo Xu, Jimin Xie.  (2020)  Size-controllable synthesis of zinc ferrite/reduced graphene oxide aerogels: efficient electrochemical sensing of p-nitrophenol.  NANOTECHNOLOGY,  31  (43): (435706).  [PMID:32559756] [10.1088/1361-6528/ab9e91]
8. Fengxia Wu, Kamel Eid, Aboubakr M. Abdullah, Wenxin Niu, Chao Wang, Yixiang Lan, Ahmed A. Elzatahry, Guobao Xu.  (2020)  Unveiling One-Pot Template-Free Fabrication of Exquisite Multidimensional PtNi Multicube Nanoarchitectonics for the Efficient Electrochemical Oxidation of Ethanol and Methanol with a Great Tolerance for CO.  ACS Applied Materials & Interfaces,  12  (28): (31309–31318).  [PMID:32538605] [10.1021/acsami.0c01668]
9. Hongtao Cao, Beijun Liu, Yiwen Ye, Yunfang Liu, Peng Li.  (2019)  Reconstruction of the Microstructure of Cyanate Ester Resin by Using Prepared Cyanate Ester Resin Nanoparticles and Analysis of the Curing Kinetics Using the Avrami Equation of Phase Change.  Applied Sciences-Basel,  (11): (2365).  [PMID:] [10.3390/app9112365]
10. Qin Li, Hui Li, Runming Wang, Guangfang Li, Hao Yang, Rong Chen.  (2013)  Controllable microwave and ultrasonic wave combined synthesis of ZnO micro-/nanostructures in HEPES solution and their shape-dependent photocatalytic activities.  JOURNAL OF ALLOYS AND COMPOUNDS,  567  (1).  [PMID:] [10.1016/j.jallcom.2013.03.077]
11. Mengwei Chen,Jiaojiao Wu,Peng Ning,Jingjing Wang,Zuan Ma,Liqun Huang,Gustavo R Plaza,Yajing Shen,Chang Xu,Yu Han,Maciej S Lesniak,Zhongmin Liu,Yu Cheng.  (2019-12-24)  Remote Control of Mechanical Forces via Mitochondrial-Targeted Magnetic Nanospinners for Efficient Cancer Treatment..  Small (Weinheim an der Bergstrasse, Germany),  16  ((3)): (e1905424-e1905424).  [PMID:31867877]

Solution Calculators