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17501-44-9

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  • Zirconium,tetrakis(2,4-pentanedionato-kO2,kO4)-,(SA-8-11''11''1'1'''1'1''')- Manufacturer/High quality/Best price/In stock

    Cas No: 17501-44-9

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  • Dayang Chem (Hangzhou) Co.,Ltd.
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  • 98% + Purity Zirconium (IV) Acetylacetonate Low Discount From China Zirconium (IV) Acetylacetonate Factory Price Good Quality High Purity Zirconium Acetylacetonate with Competitive Price

    Cas No: 17501-44-9

  • USD $ 0.35-0.35 / Gram

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17501-44-9 Usage

Chemical Properties

Light yellow powder

Uses

Different sources of media describe the Uses of 17501-44-9 differently. You can refer to the following data:
1. Zirconium(IV) 2,4-pentanedionate is used as a cross-linking agent for oxygen-containing polymers. It is used as a catalyst in organic synthesis for the nitration of o-nitrotoluene using a dinitrogen pentoxide to get 2,4-dinitrotoluenes and 2,6-dinitrotoluenes.
2. Starting material for zirconium metallomesogens: zirconium tetrakis-β-diketonate liquid crystals.

Safety Profile

Poison by intraperitoneal route. When heated to decomposition it emits acrid smoke and irritating fumes. Used as a cross-linking agent for oxygen-containing polymers. See also ZIRCONIUM COMPOUNDS

Purification Methods

The zirconium complex crystallises from hot 95% EtOH (m 190-191o) or pet ether and sublimes in vacuo at 140o with slight decomposition. The decahydrate effloresces in air and dehydrates in a 0.1mm vacuum. Its solubility in 1L at 20o is 30g in CS2, 47g in CCl4, 44g in ethylene dibromide, 56g in acetonylacetone and 200g in *C6H6. [Young & Arch Inorg Synth II 122 1964, Beilstein 1 H 782, 1 II 835, 1 III 3121, 1 IV 3672.]

Check Digit Verification of cas no

The CAS Registry Mumber 17501-44-9 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,7,5,0 and 1 respectively; the second part has 2 digits, 4 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 17501-44:
(7*1)+(6*7)+(5*5)+(4*0)+(3*1)+(2*4)+(1*4)=89
89 % 10 = 9
So 17501-44-9 is a valid CAS Registry Number.
InChI:InChI=1/4C5H8O2.Zr/c4*1-4(6)3-5(2)7;/h4*3,6H,1-2H3;/q;;;;+4/p-4/b4*4-3-;

17501-44-9 Well-known Company Product Price

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  • TCI America

  • (Z0006)  Tetrakis(2,4-pentanedionato)zirconium(IV)  

  • 17501-44-9

  • 25g

  • 330.00CNY

  • Detail
  • TCI America

  • (Z0006)  Tetrakis(2,4-pentanedionato)zirconium(IV)  

  • 17501-44-9

  • 100g

  • 1,290.00CNY

  • Detail
  • TCI America

  • (Z0006)  Tetrakis(2,4-pentanedionato)zirconium(IV)  

  • 17501-44-9

  • 500g

  • 3,250.00CNY

  • Detail
  • Alfa Aesar

  • (14065)  Zirconium(IV) 2,4-pentanedionate   

  • 17501-44-9

  • 50g

  • 436.0CNY

  • Detail
  • Alfa Aesar

  • (14065)  Zirconium(IV) 2,4-pentanedionate   

  • 17501-44-9

  • 250g

  • 936.0CNY

  • Detail
  • Aldrich

  • (338001)  Zirconium(IV)acetylacetonate  97%

  • 17501-44-9

  • 338001-25G

  • 505.44CNY

  • Detail
  • Aldrich

  • (338001)  Zirconium(IV)acetylacetonate  97%

  • 17501-44-9

  • 338001-100G

  • 1,322.10CNY

  • Detail

17501-44-9SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 10, 2017

Revision Date: Aug 10, 2017

1.Identification

1.1 GHS Product identifier

Product name Zirconium(IV) Acetylacetonate

1.2 Other means of identification

Product number -
Other names Tetrakis(2,4-pentanedionato)zirconium(IV)

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:17501-44-9 SDS

17501-44-9Downstream Products

17501-44-9Relevant articles and documents

Zirconium(IV) and hafnium(IV) coordination polymers with a tetra-acetyl-ethane (Bisacac) ligand: Synthesis, structure elucidation and gas sorption behavior

Hentschel, Felix,Vinogradov, Vladimir V.,Vinogradov, Alexandr V.,Agafonov, Alexander V.,Guliants, Vadim V.,Persson, Ingmar,Seisenbaeva, Gulaim A.,Kessler, Vadim G.

, p. 297 - 303 (2015)

Octahedrally shaped crystals of Zr(Bisacac)2 and Hf(Bisacac)2, M(IV) derivatives of bis-acetylacetone (tetra-acetyl-ethane), H2Bisacac, were obtained in quantitative yield by a simple and reproducible synthetic procedure. The coordination spheres of Zr and Hf were found to be very closely related to those in molecular beta-diketonates, M(acac)4, according to the data of EXAFS spectroscopy. The structures are highly disordered, reflecting the multitude of conformations possible for each M(IV) centre. Crystal structure models involving metal centres with tetrahedrally arranged binding nodes were proposed for M(Bisacac)2. The produced materials are microporous with pronounced temperature-dependent affinity and selectivity to hydrogen gas absorption.

Gas-sensing properties of nanostructured CeO2-xZrO2 thin films obtained by the sol-gel method

Mokrushin, Artem S.,Simonenko, Elizaveta P.,Simonenko, Nikolay P.,Bukunov, Kirill A.,Sevastyanov, Vladimir G.,Kuznetsov, Nikolay T.

, p. 1023 - 1032 (2019)

With the use of sol-gel technology and heat-treatment at a temperature of 500°С we obtained CeO2-xZrO2 (where х = 0, 5, 10, 20, 30, 50 mol%) powders and thin films that are promising for oxygen detection. A phase composition of the samples was studied using XRD and Raman spectroscopy. It was shown that under these synthesis conditions, both for powders and films, an increase in the content of zirconium dioxide from 0 to 50 mol% entailed the formation of solid solutions with a fluorite crystal lattice in the structure of cerium dioxide. For CeO2-xZrO2 thin films (where х = 0÷30 mol%), gas-sensing properties were studied: we identified a resistive response to oxygen in a wide range of concentrations (0.4–20%) at a low operating temperature of 400 °C, and studied the effect of moisture on the signal obtained while detecting O2. Upon increase of humidity from 0 to 100% resistance and response to oxygen values decrease, and from 75% and larger humidity a significant worsening of kinetic properties occurs, such as response time and recovery time. Selectivity to analyte gases such as H2, CO, CH4, NO2 was studied. The best selectivity to oxygen was displayed by the film containing 20% ZrO2, while the film with 10% ZrO2 demonstrated the worst selectivity. Using Raman spectroscopy it was shown that, after studies in a gas-air mixture containing not more than 1% of reducing gases, the nanomaterial surface contained oxygen superoxides and peroxides that were not removed, even after subsequent heat treatment in air at 500 °C.

Synthesis, structural characterization, and catalytic properties of group 4 metal complexes incorporating a phosphorus-bridged indenyl-carboranyl constrained-geometry ligand

Wang, Hong,Chan, Hoi-Shan,Okuda, Jun,Xie, Zuowei

, p. 3118 - 3124 (2008/10/09)

Interaction of iPr2NP(C9H 7)(C2B10H11) with 1 equiv of M(NR2)4 in toluene gave constrained-geometry group 4 metal amides [η5:σ-iPr2NP(C 9H6)(C2B10H10)]M(NMe 2)2 (R = Me, M = Ti (1), Zr (2), Hf (3); R = Et, M = Hf (4)) in good yields. Compound 2 reacted with 3 equiv of PhNCO to produce the tri-insertion product [η5:σ-iPr 2NP(C9H6)(C2B10H 10)]Zr[η2-OC(NMe2)NPh] [η 2-OC(NMe2)N(Ph)C=(NPh)O] (5). No further insertion reaction occurred with another equivalent of PhNCO. Instead, the trimer (PhNCO)3 was isolated. Compound 2 reacted with 2 equiv of n-BuLi in toluene to afford, after recrystallization from DME/toluene, the dilithium salt [Li(DME)3] [η5:σ-iPr 2NP(C9H6)(C2B10H 10)Li(DME)] (6). An equimolar reaction of 2 with acetylacetone resulted in the formation of Zr(acac)4. 2 exhibited an ethylene polymerization activity of 3.7 × 103 g PE mol-1 atm-1 h-1 upon activation with MMAO. Furthermore, 2 was also able to efficiently initiate the polymerization of ε-caprolactone to give polymers of high molecular weights (Mn > 40 000) and low polydispersities (MwMn 1.4) through the action of the nucleophilic amido-nitrogen atom, which represents the first example of the polymerization of ε-caprolactone catalyzed by group 4 metal amides.

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