Aluminum triacetylacetone - 98%, high purity , CAS No.13963-57-0

5 Citations
  • ≥98%
Item Number
A105073
Grouped product items
SKUSizeAvailabilityPrice Qty
A105073-25g
25g
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$13.90
A105073-100g
100g
In stock
$39.90
A105073-500g
500g
In stock
$106.90

Basic Description

SynonymsAl(acac)3 | Aluminum 2,4-pentanedionate | Aluminum acetylacetonate | Tris(acetylacetonato)aluminum(III) | Acetylacetone Aluminum(III) Salt
Specifications & Purity≥98%
Storage TempRoom temperature
Shipped InNormal
Product Description

Alumunium acetylacetonate is insoluble in water but soluble in organic solvents. It reacts with alkalis, acids, water at elevated temperatures. It can be prepared by reacting AlCl3 and acetylacetonate.
Alumunium acetylacetonate may be used: to prepare transparent superhydrophobic boehmite and silica films by sublimation, to deposit alumunium oxide films by chemical vapor deposition, as a catalyst.

Names and Identifiers

WGK Germany 3
RTECS BD2230000
UN Number 3467
Molecular Weight 324.31
Beilstein 4157942
Reaxy-Rn 4157942

Certificates

Certificate of Analysis(COA)

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24 results found

Lot NumberCertificate TypeDateItem
I2406136Certificate of AnalysisAug 29, 2024 A105073
I2406135Certificate of AnalysisAug 29, 2024 A105073
G2403096Certificate of AnalysisJun 21, 2024 A105073
G2403095Certificate of AnalysisJun 21, 2024 A105073
G2403094Certificate of AnalysisJun 21, 2024 A105073
H2402099Certificate of AnalysisMay 06, 2024 A105073
G2418377Certificate of AnalysisMay 06, 2024 A105073
D2417088Certificate of AnalysisMar 29, 2024 A105073
D2417089Certificate of AnalysisMar 29, 2024 A105073
D2417090Certificate of AnalysisMar 29, 2024 A105073
D2417091Certificate of AnalysisMar 29, 2024 A105073
A2417040Certificate of AnalysisJan 05, 2024 A105073
A2417045Certificate of AnalysisJan 05, 2024 A105073
A2417044Certificate of AnalysisJan 05, 2024 A105073
A2417043Certificate of AnalysisJan 05, 2024 A105073
A2417042Certificate of AnalysisJan 05, 2024 A105073
A2417041Certificate of AnalysisJan 05, 2024 A105073
A2417039Certificate of AnalysisJan 05, 2024 A105073
K2307016Certificate of AnalysisOct 23, 2023 A105073
K2307021Certificate of AnalysisOct 23, 2023 A105073
K2307024Certificate of AnalysisOct 23, 2023 A105073
K2307026Certificate of AnalysisOct 23, 2023 A105073
E2326289Certificate of AnalysisNov 16, 2021 A105073
J2313096Certificate of AnalysisNov 16, 2021 A105073

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Chemical and Physical Properties

SolubilityIt is soluble in organic solvents but insoluble in water
SensitivityMoisture sensitive.
Boil Point(°C)315 °C
Melt Point(°C)195°C

Safety and Hazards(GHS)

Pictogram(s) GHS06
Signal Danger
Hazard Statements

H315:Causes skin irritation

H319:Causes serious eye irritation

H335:May cause respiratory irritation

H300:Fatal if swallowed

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.

P301+P310:IF SWALLOWED: Immediately call a POISON CENTER/doctor/...

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

WGK Germany 3
RTECS BD2230000
Reaxy-Rn 4157942

Related Documents

Citations of This Product

1. Hongyu Chen, Yunfei Wang, Jianing Wang, Yajuan Wang, Wenyan Liu.  (2023)  Green, pollution-free and low-cost semiconductor luminescent material based on CuAlInS quantum dots.  Materials Today Communications,  37  (20): (107475).  [PMID:26195665]
2. Xie Wenlei, Wang Quan, Guo Lihong, Zhang Qiaofei.  (2023)  Improved Biodiesel Production from Soybean Oil Using Molybdenum-Zirconium Doped Aluminosilicates as Heterogeneous Catalysts.  BioEnergy Research,    (1-15).  [PMID:]
3. Qiuxia Zou, Hongshen He, Jie Xie, Shibo Han, Weijie Lin, Ajoy Kanti Mondal, Fang Huang.  (2023)  Study on the mechanism of acid modified H-Beta zeolite acidic sites on the catalytic pyrolysis of Kraft lignin.  CHEMICAL ENGINEERING JOURNAL,  462  (142029).  [PMID:]
4. Linxiang Yang, Qingsong Shan, Shuai Zhang, Yihui Zhou, Yan Li, Yousheng Zou, Haibo Zeng.  (2023)  Improving anion-exchange efficiency and spectrum stability of perovskite quantum dots via an Al3+ bonding-doping synergistic effect.  Nanoscale,  15  (12): (5696-5704).  [PMID:36804729]
5. H. Zhang, J. Xu, S. Wang, Q. Liu, X. Kong.  (2022)  Constructing holey γ-Fe2O3 nanosheets with enhanced capability for microwave absorption.  Materials Today Chemistry,  23  (100690).  [PMID:]

References

1. Hongyu Chen, Yunfei Wang, Jianing Wang, Yajuan Wang, Wenyan Liu.  (2023)  Green, pollution-free and low-cost semiconductor luminescent material based on CuAlInS quantum dots.  Materials Today Communications,  37  (20): (107475).  [PMID:26195665]
2. Xie Wenlei, Wang Quan, Guo Lihong, Zhang Qiaofei.  (2023)  Improved Biodiesel Production from Soybean Oil Using Molybdenum-Zirconium Doped Aluminosilicates as Heterogeneous Catalysts.  BioEnergy Research,    (1-15).  [PMID:]
3. Qiuxia Zou, Hongshen He, Jie Xie, Shibo Han, Weijie Lin, Ajoy Kanti Mondal, Fang Huang.  (2023)  Study on the mechanism of acid modified H-Beta zeolite acidic sites on the catalytic pyrolysis of Kraft lignin.  CHEMICAL ENGINEERING JOURNAL,  462  (142029).  [PMID:]
4. Linxiang Yang, Qingsong Shan, Shuai Zhang, Yihui Zhou, Yan Li, Yousheng Zou, Haibo Zeng.  (2023)  Improving anion-exchange efficiency and spectrum stability of perovskite quantum dots via an Al3+ bonding-doping synergistic effect.  Nanoscale,  15  (12): (5696-5704).  [PMID:36804729]
5. H. Zhang, J. Xu, S. Wang, Q. Liu, X. Kong.  (2022)  Constructing holey γ-Fe2O3 nanosheets with enhanced capability for microwave absorption.  Materials Today Chemistry,  23  (100690).  [PMID:]

Solution Calculators