Online Database of Chemicals from Around the World

4-Nitrophenyl phosphate bis(cyclohexylammonium) salt
[CAS 52483-84-8]

List of Suppliers
Capot Chemical Co., Ltd. China
www.capotchem.com
+86 (571) 8558-6718
+86 13336195806
+86 (571) 8586-4795
capotchem@gmail.com
sales@capotchem.com
QQ Chat
Chemical manufacturer
chemBlink Standard supplier since 2006
Simagchem Corporation China
www.simagchem.com
+86 13806087780
+86 (592) 268-0237
sale@simagchem.com
Chemical manufacturer since 2002
chemBlink Standard supplier since 2008
BOC Sciences USA
www.bocsci.com
+1 (631) 485-4226
+1 (631) 614-7828
info@bocsci.com
Chemical manufacturer
chemBlink Standard supplier since 2010
LOBA Feinchemie AG Austria
www.loba.co.at
+43 (223) 277-391
+43 (223) 276-677
sales@loba.co.at
Chemical distributor
chemBlink Standard supplier since 2012
Coresyn Pharmatech Co., Ltd. China
www.coresyn.com
+86 (571) 8662-6709
sales@coresyn.com
Chemical manufacturer
chemBlink Standard supplier since 2016
Hangzhou Molcore Biopharmatech Co., Ltd. China
www.molcore.com
+86 (571) 8102-5280
sales@molcore.com
QQ Chat
Chemical manufacturer since 2010
chemBlink Standard supplier since 2017
HuNan Huibaiyi New Materials Co; Ltd. China
www.hbsjxcl.com
+86 13319523173
ivy@hnhbsj.com
QQ Chat
WeChat: 13319523173
Chemical manufacturer since 2014
chemBlink Standard supplier since 2026
Melford Laboratories Limited UK
www.melford.co.uk
+44 (1449) 741-178
+44 (1449) 741-217
pfranklin@melford.co.uk
sales@melford.co.uk
Chemical manufacturer since 1985

Identification
ClassificationChemical reagent >> Organic reagent >> Amine salt (ammonium salt)
Name4-Nitrophenyl phosphate bis(cyclohexylammonium) salt
Synonymsbis(cyclohexanamine);(4-nitrophenyl) dihydrogen phosphate
Molecular Structure4-Nitrophenyl phosphate bis(cyclohexylammonium) salt molecular structure (CAS 52483-84-8)
Molecular Formula2(C6H13N).C6H6NO6P
Molecular Weight417.44
CAS Registry Number52483-84-8
EC Number257-949-0
SMILESC1CCC(CC1)N.C1CCC(CC1)N.C1=CC(=CC=C1[N+](=O)[O-])OP(=O)(O)O
Safety Data
Hazard Symbolssymbol   GHS07 Warning  Details
Risk StatementsH315-H319-H335  Details
Safety StatementsP261-P264-P264+P265-P271-P280-P302+P352-P304+P340-P305+P351+P338-P319-P321-P332+P317-P337+P317-P362+P364-P403+P233-P405-P501  Details
Hazard Classification
up    Details
HazardClassCategory CodeHazard Statement
Specific target organ toxicity - single exposureSTOT SE3H335
Eye irritationEye Irrit.2H319
Skin irritationSkin Irrit.2H315
SDSAvailable
up Discovery and Applications
4-Nitrophenyl phosphate bis(cyclohexylammonium) salt is an organic phosphate ester salt commonly used as a chromogenic substrate for phosphatase enzymes in biochemical assays. The compound consists of a 4-nitrophenyl phosphate anion paired with two cyclohexylammonium cations, forming a stabilized ionic solid with enhanced handling and solubility properties for laboratory use.

The core structural unit is 4-nitrophenyl phosphate, a phosphate monoester derived from 4-nitrophenol. It contains a benzene ring substituted at the para position with a nitro group (–NO2) and an oxygen-linked phosphate group (–O–PO3H2 in its protonated form). The aromatic ring is planar and features a delocalized π-electron system, while the nitro group is strongly electron-withdrawing, influencing the electronic distribution of the ring and stabilizing the phenolate form of the enzymatic product.

The phosphate group consists of a central phosphorus atom tetrahedrally coordinated to four oxygen atoms. In the bis(cyclohexylammonium) salt, two of these oxygen atoms are deprotonated, giving the phosphate moiety a net negative charge that is balanced by two cyclohexylammonium cations. This ionic arrangement enhances crystalline stability and water compatibility.

Cyclohexylammonium ions are protonated forms of cyclohexylamine, in which the nitrogen atom bears a positive charge (–NH3+ or protonated amine form depending on context) and is attached to a saturated cyclohexyl ring. The cyclohexyl group is a non-aromatic, conformationally flexible six-membered carbon ring that typically adopts a chair conformation. These cations contribute hydrophobic character relative to smaller inorganic counterions while still providing ionic stabilization through electrostatic interaction with the phosphate anion.

The key reactive feature of the molecule is the phosphate ester bond linking the aromatic oxygen to the phosphate group. This bond is selectively cleaved by phosphatase enzymes, which catalyze hydrolysis of phosphate monoesters. The enzymatic reaction releases free 4-nitrophenol and inorganic phosphate. The liberated 4-nitrophenol can undergo deprotonation under alkaline conditions to form 4-nitrophenolate, a strongly yellow chromophore.

The nitro substituent at the para position plays an essential role in stabilizing the chromogenic product. Through strong electron-withdrawing effects, it enhances the acidity of 4-nitrophenol and stabilizes the negative charge in the phenolate form via resonance. This electronic stabilization is responsible for the intense visible absorption used in spectrophotometric detection.

From a structural perspective, the phosphate ester linkage is the most chemically significant bond in the substrate. It is stable under neutral conditions but readily hydrolyzed in the presence of phosphatase enzymes. The aromatic system remains intact during the reaction, serving primarily as a reporter group for color development.

Physicochemically, the compound is highly polar and water-compatible due to its ionic phosphate group and ammonium counterions. The aromatic portion contributes limited hydrophobic character, while the cyclohexylammonium groups introduce organic bulk and moderate hydrophobicity compared with inorganic salts.

The cyclohexylammonium cations do not participate directly in the enzymatic reaction but influence solubility, crystallization, and storage stability. Their organic nature can also affect dissolution behavior in aqueous buffer systems used in biochemical assays.

Chemically, the most important transformation is enzymatic cleavage of the phosphate ester bond. The phosphate group itself is relatively stable outside enzymatic or strongly acidic/basic conditions. The nitro-substituted aromatic ring is chemically stable under assay conditions and primarily functions as a chromogenic reporter system.

Overall, 4-nitrophenyl phosphate bis(cyclohexylammonium) salt is a water-soluble phosphate ester composed of a para-nitrophenyl group linked to a phosphate dianion stabilized by cyclohexylammonium counterions. Its design enables selective enzymatic hydrolysis and the generation of a measurable yellow chromophore, making it a widely used reagent for phosphatase activity assays in biochemical research.
Market Analysis Reports
Related Products
3-(4-Nitropheny...  6-(4-Nitropheny...  4-Nitrophenyl(P...  4-Nitrophenyl p...  2-Nitrophenyl p...  1-(4-Nitropheny...  4-(3-Nitropheny...  4-Nitrophenyl P...  1-(3-Nitropheny...  2-Nitrophenyl p...  p-Nitrophenyl P...  4-Nitrophenyl p...  4-Nitrophenyl p...  4-Nitrophenyl P...  (4-Nitrophenyl)...  N-(3-Nitropheny...  (2-Nitrophenyl)...  4-Nitrophenyl p...  N-(4-Nitropheny...  4-Nitro-N-Pheny...