CAS 112888-76-3

tert-butyl 4-[N-[2-acetoxymethyl-7-chloro-3-methyl-4-oxo-3,4-dihydroquinazolin-6-ylmethyl]-N-(prop-2-ynyl)amino]benzoate

Other Click Chemistry Reagents

About This Compound

This category encompasses diverse reagents used across various click chemistry reactions, including activated esters, Michael acceptors, epoxides, and multi-functional building blocks. These compounds participate in thiol-ene reactions, Michael additions, ring-opening reactions, and other modular coupling strategies that meet the criteria of click chemistry — high yield, wide scope, simple conditions, and easy purification.

Molecular FormulaC14H17NO2 Molecular Weight231.294 g/mol InChIKeyWCHCOTTZGIWYPX-UHFFFAOYSA-N CAS Registry112888-76-3 Literature Refs16 references

Synthesis Routes

Showing 3 of 37 available routes, sorted by yield.

Route 1

1 step Yield: 84.4%
O-t-butyl 4-(trifluoroacetamido)benzoate
CAS 1262414-95-8
C13H14F3NO3
+
propargyl bromide
CAS 106-96-7
C3H3Br
tert-butyl 4-[N-[2-acetoxymethyl-7-chloro-3-methyl-4-oxo-3,4-dihydroquinazolin-6-ylmethyl]-N-(prop-2-ynyl)amino]benzoate
Conditions With potassium carbonate In N,N-dimethyl-formamide; toluene at 40℃; for 24h;
Reference Current Patent Assignee: BTG INTERNATIONAL - WO2012/11939, 2012, A2 Location in patent: Page/Page column 61-62
Source Reaxys

Route 2

1 step Yield: 73%
tert-butyl 4-(prop-2-ynylamino)benzoate
CAS 112888-76-3
C14H17NO2
+
2-acetoxymethyl-6-bromomethyl-7-chloro-3-methyl-3,4-dihydroquinazolin-4-one
CAS 289686-86-8
C13H12BrClN2O3
tert-butyl 4-[N-[2-acetoxymethyl-7-chloro-3-methyl-4-oxo-3,4-dihydroquinazolin-6-ylmethyl]-N-(prop-2-ynyl)amino]benzoate
Conditions With 2,6-dimethylpyridine In N,N-dimethyl-formamide at 120℃; for 5.5h;
Reference Bavetsias; Skelton; Yafai; Mitchell; Wilson; Allan; Jackman [Journal of Medicinal Chemistry, 2002, vol. 45, # 17, p. 3692 - 3702] DOI
Source Reaxys

Route 3

1 step Yield: 66.3%
(R,S)-2-(t-butoxymethyl)-6-hydroxy-4-oxo-3,4,7,8-tetrahydro-3H-cyclopenta[q]quinazoline
CAS 1356166-36-3
C16H20N2O3
+
tert-butyl 4-(prop-2-ynylamino)benzoate
CAS 112888-76-3
C14H17NO2
tert-butyl 4-[N-[2-acetoxymethyl-7-chloro-3-methyl-4-oxo-3,4-dihydroquinazolin-6-ylmethyl]-N-(prop-2-ynyl)amino]benzoate
Conditions Stage #1: (R,S)-2-(t-butoxymethyl)-6-hydroxy-4-oxo-3,4,7,8-tetrahydro-3H-cyclopenta[q]quinazoline In
Reference Current Patent Assignee: BTG INTERNATIONAL - WO2012/11939, 2012, A2 Location in patent: Page/Page column 58-59
Source Reaxys
34 additional routes available in the full dataset. Contact us for complete synthesis route data.

Related Compounds

Other Other Click Chemistry Reagents in our catalog:

Frequently Asked Questions

What defines a reaction as "click chemistry"?

According to Sharpless (2001), click reactions must be modular, wide in scope, high-yielding, generate only inoffensive byproducts, be stereospecific, and use readily available starting materials. They should proceed under simple conditions (ideally insensitive to oxygen and water), use benign solvents, and products should be easy to isolate without chromatography.

How do I choose the right click reaction for my application?

For in vitro bioconjugation: CuAAC is the gold standard. For live-cell work: use SPAAC or IEDDA (copper-free). For protein labeling: SuFEx or Staudinger ligation. For polymer chemistry: thiol-ene or thiol-Michael. For prodrug activation: click-to-release (IEDDA-based elimination). Consider reaction speed, biocompatibility, and orthogonality requirements.

Can click reactions be performed in aqueous media?

Most click reactions are compatible with aqueous conditions. CuAAC works in water/t-BuOH mixtures. SPAAC and IEDDA proceed rapidly in pure aqueous buffer. Thiol-ene reactions can be performed in water with water-soluble photoinitiators. SuFEx reactions work in organic/aqueous biphasic systems. This aqueous compatibility is one of the key advantages of click chemistry for biological applications.

How do I confirm click reaction completeness?

For CuAAC/SPAAC: disappearance of the azide stretch at ~2100 cm⁻¹ in IR spectroscopy. For IEDDA: loss of the tetrazine UV-Vis absorption (pink color fades). General methods: TLC, HPLC, ¹H NMR (triazole peak), and mass spectrometry. For bioconjugation: SDS-PAGE with fluorescent readout or western blot.

What is the typical shelf life of click chemistry reagents?

Azides: 6–12 months at −20 °C (avoid light). Terminal alkynes: 12+ months at −20 °C. Cyclooctynes (DIBO, DBCO, BCN): 6–12 months at −20 °C (light-sensitive). Tetrazines: 6–12 months at −20 °C (light and moisture sensitive). TCO derivatives: 3–6 months at −20 °C (isomerization-prone). Sulfonyl fluorides: 12+ months at room temperature.

Last updated: July 27, 2026