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INH-Phosphate

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Identification
Molecular formula
C9H15N3O4P
CAS number
NULL
IUPAC name
N'-isopropylpyridine-4-carbohydrazide;phosphoric acid
State
State

At room temperature, INH-Phosphate is typically a solid. Being a crystalline compound, it maintains a stable form unless subjected to temperatures above its melting point.

Melting point (Celsius)
189.80
Melting point (Kelvin)
462.95
Boiling point (Celsius)
139.10
Boiling point (Kelvin)
412.25
General information
Molecular weight
213.21g/mol
Molar mass
204.2100g/mol
Density
1.5297g/cm3
Appearence

INH-Phosphate appears as a white to off-white crystalline powder. It may appear slightly granular or in the form of fine powder. Its consistency may vary depending on particle size.

Comment on solubility

Solubility of N'-isopropylpyridine-4-carbohydrazide;phosphoric acid

N'-isopropylpyridine-4-carbohydrazide, when combined with phosphoric acid, displays a unique solubility profile worth noting. Generally, the solubility of this compound can be influenced by various factors such as:

  • Polarity: The presence of both hydrophobic and hydrophilic segments within its structure often leads to a varied solubility in different solvents.
  • Temperature: Increased temperatures can enhance solubility, allowing more of the compound to dissolve in specified solvents.
  • pH Levels: The solubility may change with alterations in pH, particularly because of the acidic phosphoric acid which can promote ionization of functional groups.

In general, this compound is likely to have good solubility in polar solvents due to the potential for hydrogen bonding. It is essential to consider the following points:

  1. The interaction of the hydrazide functional group with water enhances solubility.
  2. The isopropyl group may introduce some hydrophobicity, impacting overall solubility in non-polar solvents.
  3. When mixed with phosphoric acid, the solubility characteristics may improve significantly due to increased ionic interactions.

Overall, the solubility of N'-isopropylpyridine-4-carbohydrazide;phosphoric acid can be described as context-dependent, showcasing a balance between its hydrophilic and hydrophobic nature. For practical applications, always refer to empirical data specific to your conditions to optimize solubility.

Interesting facts

Exploring N'-isopropylpyridine-4-carbohydrazide in Phosphoric Acid

N'-isopropylpyridine-4-carbohydrazide is a fascinating compound notable for its diverse applications and rich chemistry. When combined with phosphoric acid, this compound exhibits distinctive characteristics that contribute to its utility in various fields.

Key Features and Applications

  • Pharmaceutical Relevance: N'-isopropylpyridine-4-carbohydrazide often finds its application in pharmaceuticals, where it serves as a building block in the synthesis of various medicinal agents.
  • Chemistry Education: For students, this compound represents a classic case study in the fascinating world of hydrazones and pyridine derivatives, bridging organic synthesis and practical applications.
  • Catalytic Properties: In some contexts, the interactions between this compound and phosphoric acid can lead to unique catalytic properties that enhance chemical reactions.
  • Hydrophobic Chemistry: The isopropyl group contributes to the hydrophobic nature of the molecule, leading to interesting behavior in aqueous environments.

As noted by scientists in the field, the versatility of N'-isopropylpyridine-4-carbohydrazide is a testament to the intricate designs of molecules used in modern chemistry. Its ability to interact with acids such as phosphoric acid highlights the importance of acid-base chemistry in organic synthesis.

Moreover, as the study of this compound continues, we can anticipate further innovations and discoveries. Its role in the advancement of material science and drug development cannot be overstated, making it a crucial subject of research.

Overall, N'-isopropylpyridine-4-carbohydrazide not only enriches our understanding of organic compounds but also opens pathways for future scientific breakthroughs. Its multifaceted nature serves as an inspiration for both seasoned chemists and aspiring students alike.

Synonyms
Iproniazid phosphate
305-33-9
Iproniazide phosphate
N'-Isopropylisonicotinohydrazide phosphate
Marsilid phosphate
Isoproniazid phosphate
Iproniazid (phosphate)
Iproniazid dihydrogen phosphate
4-Pyridinecarboxylic acid, 2-(1-methylethyl)hydrazide, phosphate (1:1)
Iproniazid phosphate (VAN)
EINECS 206-164-1
1-Isonicotinyl-2-isopropylhydrazine phosphate
1-Isopropyl-2-isonicotinylhydrazine phosphate
UNII-8DE00V62TV
NSC 81850
8DE00V62TV
AI3-62177
NSC-81850
MLS000069781
ISONICOTINIC ACID, 2-ISOPROPYLHYDRAZIDE, PHOSPHATE
IPRONIAZID PHOSPHATE [MI]
IPRONIAZID PHOSPHATE [MART.]
IPRONIAZID PHOSPHATE [WHO-DD]
Isonicotinic acid 2-isopropylhydrazide phosphate salt
Isonicotinic acid, 2-isopropylhydrazide, phosphate (1:1)
SMR000058459
Marsilid (TN)
Iproniazid as phosphate
4-Pyridinecarboxylic acid, 2-(1-methylethyl)hydrazide, phosphate (1:1) (9CI)
phosphoric acid;N'-propan-2-ylpyridine-4-carbohydrazide
IPRONIAZIDPHOSPHATE
IPRONIAZID PHOSPHATE (MART.)
NSC81850
SR-01000075585
Prestwick_280
MFCD00012831
Opera_ID_317
Isonicotinic acid, phosphate
MLS002222196
SCHEMBL158555
CHEMBL1256361
DTXSID20952815
YPDVTKJXVHYWFY-UHFFFAOYSA-N
HMS1568D13
HMS2095D13
HMS2235O15
HMS3262A07
HMS3372C05
HMS3712D13
HY-B0886
Tox21_500643
Isonicotinic acid, phosphate (1:1)
s4483
AKOS024258484
CCG-220176
CCG-221947
LP00643
s10635
NCGC00094010-01
NCGC00094010-02
NCGC00261328-01
DA-54365
N''-Isopropylisonicotinohydrazide Phosphate
4-Pyridinecarboxylic acid, phosphate (1:1)
EU-0100643
NS00079254
D08085
I 7627
SR-01000075585-1
SR-01000075585-5
Q27270224
Isonicotinic acid, 2-isopropylhydrazide, phosphate (1:1) (8CI)
Phosphoric acid--N'-(propan-2-yl)pyridine-4-carbohydrazide (1/1)
206-164-1