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Type HazMat fee for 500 gram (Estimated)
Excepted Quantity USD 0.00
Limited Quantity USD 15-60
Inaccessible (Haz class 6.1), Domestic USD 80+
Inaccessible (Haz class 6.1), International USD 150+
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Accessible (Haz class 3, 4, 5 or 8), International USD 200+
Chemical Structure| 20427-59-2 Chemical Structure| 20427-59-2
Chemical Structure| 20427-59-2

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Product Citations

Product Citations

Zhong, Zhuoran ; Damacet, Patrick ; Sánchez-González, Elí ; Eagleton, Aileen M ; Vereshchuk, Nataliia ; Wongratanaphisan, Ravint , et al.

Abstract: As smart electronic textiles (e-textiles) rapidly emerge as a transformative technology in advanced functional materials, a significant gap remains in developing multifunctional devices for air quality management and monitoring. This study addresses this challenge by demonstrating the first example of simultaneous sulfur dioxide (SO2) sensing and filtration using a copper-based hexahydroxytriphenylene (Cu3(HHTP)2) metal-organic framework (MOF) incorporated into polyester textiles via a scalable templated fabrication method. First, the prepared MOF/textile composites meet the Occupational Safety and Health Administration’s (OSHA) permissible exposure limit (PEL) with sub-ppm sensing capabilities, while offering high SO2 adsorption capacity and device regenerability. Second, this work provides valuable fundamental insights into the interactions between MOF and SO2 through a combination of experimental and computational studies, revealing the pathway by which SO2 is converted into less-toxic sulfate species. This understanding will contribute to future research on MOF-based air pollutant remediation. Third, the scalable fabrication method up to 100 cm2 dimension lays the groundwork for the production of largearea MOF/textile devices. The scalability enhances the potential for widespread use of MOF materials in wearable sensors and personal protective equipment (PPE), where timely detection and filtration of harmful gases are crucial. Ultimately, this research establishes the scientific basis for the integration of functional MOFs into next-generation smart textiles, with promising applications in environmental monitoring, health protection, and air remediation.

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Alternative Products

Product Details of Copper dihydroxide

CAS No. :20427-59-2
Formula : CuH2O2
M.W : 97.56
SMILES Code : [Cu+2].[OH-].[OH-]
MDL No. :MFCD00010968
InChI Key :AEJIMXVJZFYIHN-UHFFFAOYSA-N
Pubchem ID :30154

Safety of Copper dihydroxide

GHS Pictogram:
Signal Word:Danger
Hazard Statements:H302-H318-H330-H410
Precautionary Statements:P260-P264-P270-P271-P273-P280-P284-P301+P312+P330-P304+P340+P310-P305+P351+P338+P310-P391-P403+P233-P405-P501
Class:6.1
UN#:3288
Packing Group:

Application In Synthesis of Copper dihydroxide

* All experimental methods are cited from the reference, please refer to the original source for details. We do not guarantee the accuracy of the content in the reference.

  • Upstream synthesis route of [ 20427-59-2 ]
  • Downstream synthetic route of [ 20427-59-2 ]

[ 20427-59-2 ] Synthesis Path-Upstream   1~1

  • 1
  • [ 20427-59-2 ]
  • [ 57-11-4 ]
  • [ 660-60-6 ]
References: [1] Comptes Rendus Hebdomadaires des Seances de l'Academie des Sciences, 1938, vol. 207, p. 1097 - 1099.
[2] Gmelin Handbuch, Gmelin Handbook: Cu: MVol.B2, 44, page 715 - 717, .
 

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