arrangement. If the permeability of the cytoplasmic
membrane function is disrupted by substances, i.e.
surfactant, the permeability of the cell wall will
change or even become damaged (Madigan, 2005).
The Mannich reaction is a reaction to modify
enolate compounds to be dialkylamino methylene
that have active hydrogen atoms. This reaction
occurs through a condensation reaction on
functionals groups that can be enolized with
imminium ions (Mannich base), i.e. a product from
the reaction between formaldehyde and secondary
amines (Purwono and Daruningsih, 2010). In
(Karanov et al., 1995), the synthesis of 2-methoxy-
4-(1-prophenyl)-6-phenol through Mannich reaction
with eugenol, formaldehyde, and amine compound
showed an activities as plant growth control. In the
previous work, (Perangin-angin, 2002) performed a
synthesis reaction between eugenol and dimethyl
sulphate in alkaline condition, and produced 2,2-
methylene-bis-6-methoxy-4-(2-propenyl)phenol
with yield of 43%. The other study also performed a
synthesis of 6-butylaminomethyl and 6-
dibutylaminomethyl from eugenol through Mannich
reaction with yield of 50 and 78%, respectively. This
study also learn the influence of the effect of
primary and secondary amines (Hecht, 2014).
(Popovici et al., 1999) synthesized several Mannich
oxime base derivatives into quaternary ammonium
salts. For the example, 1-(2-hydroxy-5-methylpenyl)
-3-dialkylamino-1-propanone was quaternized using
methyl iodide in tetrahydrofuran (THF) and ethanol
at room temperature with yield of 93 and 65%,
respectively. (Perangin-angin, 2019) synthesized 4-
allyl-6-(hydroxymethyl)-2-methoxyphenol from
eugenol through Mannich reactions followed by
methylation and substitution reaction.
Therefore, the objective of the present research
was to synthesize quaternary ammonium salt that
based on eugenol structure through Mannich
reaction and followed by methylation reaction. The
obtained quaternary ammonium salt showed a
moderate antibacterial activity.
2 MATERIALS AND METHODS
2.1 Materials
Equipment: glassware, rotary evaporator, hotplate
with stirrer, Fourier Transform Infrared (FT-IR),
Gas Chromatography Mass Spectrometer (GC-MS),
Spectrophotometer UV-Vis.
Materials: Eugenol, Dimethylamine, Ethanol,
Formaldehyde, Methyl iodide, Na
2
SO
4
anhydride,
Diethyl ether, Nutrient agar (NA), S. aureus, E. coli.
2.2 Synthesis of 4-Allyl-6-(Dimethyl
amino) Methyl-2-Methoxy Phenol
Compound
As much as 4.8 g of eugenol was dissolved with 28
mL of ethanol into the three neck round bottom flask
and then 3.8 g (3.48 mL ; 0.04 mol) of formaldehyde
(37 wt.%) and 5.6 g (6.3 mL ; 0.05 mol) of
dimethylamine (40 wt.%) were followed by reflux
process at 78
o
C for 90 minutes. The mixture was
cooled and stirred for 24 h. The excess ethanol was
then evaporated by rotary evaporator. The obtained
result was characterized by FT-IR and GC-MS.
2.3 Synthesis of 6-[(N-Iodo-N-Methyl-N
Methyl-N-Methylamino) Methyl] 4-
Allyl-2-Methoxy Phenol
As much as 4.404 g (0.2 mol) of 4-allyl-6-(dimethyl
amino)methyl-2-methoxyphenol was added into
erlenmeyer. Ethanol (35 mL) and methyl iodide (0.2
mol) were added into erlenmeyer, and tightly closed.
The mixture was stirred at room temperature with a
magnetic stirrer for 2 h and allowed to stand in the
refrigerator for one night. The precipitate formed
was filtered using filter paper and washed with
diethyl ether. The obtained product was purified by
recrystallization process using ethanol and analysed
by FT-IR.
2.4 Preparation of Nutrient Agar Slant
(NA)
About 7 g of NA was dissolved with 250 mL of
distillate water and sterilized in an autoclave at
121
o
C for 15 minutes.
2.5 Preparation of Medium Agar Slant
and Bacterial Culture Stock
The NA slant was prepared by adding 3 mL of NA
into test tube and placed it in the rack. Tilt the rack
onto solid surface so that the medium is slanted.
Allow the medium to harden in this position. The
culture was obtained from stock and taken with an
osse. This culture was incubated at 35
o
C for 18-24 h.
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