Products may be shipped at a different temperature than the recommended long-term storage temperature. If the product quality is sensitive to short-term exposure to conditions other than the recommended long-term storage, it will be shipped on wet or dry-ice. If the product quality is NOT affected by short-term exposure to conditions other than the recommended long-term storage, it will be shipped at ambient temperature. As shipping routes are configured for minimum transit times, shipping at ambient temperature helps control shipping costs for our customers. For more information, please refer to the Storage and Transport Conditions document: https://www.sigmaaldrich.com/deepweb/assets/sigmaaldrich/marketing/global/documents/316/622/storage-transport-conditions-mk.pdf
550566
2,2′-Bipyridine-4,4′-dicarboxylic acid
98%
Synonym(s):
2,2′-Bipyridyl-4,4′-dicarboxylic acid
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About This Item
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Quality Level
Assay
98%
SMILES string
OC(=O)c1ccnc(c1)-c2cc(ccn2)C(O)=O
InChI
1S/C12H8N2O4/c15-11(16)7-1-3-13-9(5-7)10-6-8(12(17)18)2-4-14-10/h1-6H,(H,15,16)(H,17,18)
InChI key
FXPLCAKVOYHAJA-UHFFFAOYSA-N
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Application
- Enhanced catalysis of CO2 cycloaddition at ambient pressure through rational design of interpenetrating ZnII/LnIII heterometallic coordination polymers: This study highlights the use of 2,2′-bipyridine-4,4′-dicarboxylic acid in the synthesis of ZnII/LnIII coordination polymers, which exhibit enhanced catalytic performance for CO2 cycloaddition at ambient pressure (Chuasaard et al., 2024).
- Immobilization of a new copper (II) complex dye with multi-walled carbon nanotubes and functional simulation in dye-sensitized solar cell: This research describes the synthesis of a new ligand using 2,2′-bipyridine-4,4′-dicarboxylic acid combined with multiwalled carbon nanotubes for potential applications in dye-sensitized solar cells (Shahbaznejad et al., 2023).
- Impact of Anchoring Groups on the Photocatalytic Performance of Iridium (III) Complexes and Their Toxicological Analysis: The study investigates the photocatalytic performance and toxicological analysis of Iridium (III) complexes using 2,2′-bipyridine-4,4′-dicarboxylic acid as an anchoring unit (Yao et al., 2024).
- Phosphonate-based iron complex for a cost-effective and long cycling aqueous iron redox flow battery: This paper discusses the use of 2,2′-bipyridine-4,4′-dicarboxylic acid in the development of a high redox potential Fe-Dcbpy/CN catholyte for iron redox flow batteries (Nambafu et al., 2024).
- 2, 2′-bipyridine-4, 4′-dicarboxylic acid ligand engineered CsPbBr3 perovskite nanocrystals for enhanced photoluminescence quantum yield with stable display properties: This article explores the use of 2,2′-Bipyridine-4,4′-dicarboxylic acid to improve the optical properties of CsPbBr3 perovskite nanocrystals for display applications (Kumar et al., 2024).
Signal Word
Warning
Hazard Statements
Precautionary Statements
Hazard Classifications
Eye Irrit. 2 - Skin Irrit. 2 - STOT SE 3
Target Organs
Respiratory system
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Personal Protective Equipment
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If this product has an expiration or retest date, it will be shown on the Certificate of Analysis (COA, CofA). If there is no retest or expiration date listed on the product's COA, we do not have suitable stability data to determine a shelf life. For these products, the only date on the COA will be the release date; a retest, expiration, or use-by-date will not be displayed.
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