zinc 5-nitroisophthalate  CAS no:60580-61-2
zinc 5-nitroisophthalate  CAS no:60580-61-2
zinc 5-nitroisophthalate  CAS no:60580-61-2
zinc 5-nitroisophthalate  CAS no:60580-61-2
zinc 5-nitroisophthalate  CAS no:60580-61-2
zinc 5-nitroisophthalate  CAS no:60580-61-2
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  • zinc 5-nitroisophthalate  CAS no:60580-61-2
  • zinc 5-nitroisophthalate  CAS no:60580-61-2
  • zinc 5-nitroisophthalate  CAS no:60580-61-2
  • zinc 5-nitroisophthalate  CAS no:60580-61-2
  • zinc 5-nitroisophthalate  CAS no:60580-61-2
  • zinc 5-nitroisophthalate  CAS no:60580-61-2

zinc 5-nitroisophthalate CAS no:60580-61-2

Scientific Research Applications of the product zinc 5-nitroisophthalate CAS no:60580-61-2 Zinc 5-nitroisophthalate CAS no:60580-61-2 has been widely used in various scientific research applications. The compound has been utilized in the field of catalysis, where it has been shown to exhibit excellent catalytic activity in various reactions. It has also been used in the synthesis of metal-organic frameworks (MOFs), which are porous materials with potential applications in gas storage, separation, and catalysis.

Categories:

Material Chemistry

Other Material Chemicals

Product introduction

PRODUCT NAME Zinc-5-nitroisophthalate
CAS NO 60580-61-2
MF C8H3NO6Zn
MW 274.50
BP 473.7ºC at 760 mmHg
FP 214ºC
APPEARANCE White powder
EINECS 262-309-9
PACKAGE According client's request
DELIVERY 2-3days

Synonyms name:
Zinc 5-nitroisophthalate; 
1,3-Benzenedicarboxylic acid,5-nitro-,zinc salt (1:1); 
zinc 5-nitrobenzene-1,3-dicarboxylate;
 

Future Directions of the product zinc 5-nitroisophthalate  CAS no:60580-61-2 


There are several future directions for Zinc 5-nitroisophthalate research. One potential area of research is the development of new synthetic strategies to enhance the yield and purity of the compound. Another area of research is the exploration of its potential applications in catalysis and MOFs. Additionally, more studies are needed to understand the mechanism of action of the compound and its potential biomedical applications.
Conclusion:
In conclusion, Zinc 5-nitroisophthalate is a coordination compound that has gained significant attention in the field of materials science and catalysis. The compound has several advantages for lab experiments, and its potential applications are vast. However, more research is needed to fully understand its mechanism of action and explore its potential applications in various fields.

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