Carbamate‐functional, biobased surfactants derived from cardanol, carbon dioxide, and amino acids: Their synthesis and properties

Author:

Zhu Tianyu1,Qian Dong1,Duan Tong1,Li Jinlan1,Yu Hui1,Huang Weizhou1,Zhou Yi1,Zhang Zhen1,Sun Jie2ORCID

Affiliation:

1. College of Biotechnology and Pharmaceutical Engineering Nanjing Tech University Nanjing China

2. College of Food Science and Light Industry Nanjing Tech University Nanjing China

Abstract

AbstractThree biobased, CO2‐consuming, and carbamate‐groups‐containing surfactants (CC‐G, CC‐T, CC‐L) were synthesized separately by combination of Cardanol, CO2, Glycine sodium salt (G), Taurine sodium salt (T), and Lysine sodium salt (L). The chemical structures of CC‐G, CC‐T, CC‐L were confirmed by 1H NMR and IR spectra. Thermal properties of these surfactants were studied with TGA and DSC. Their critical micelle concentration (CMC) and surface tension at CMC (CMC) in aqueous solution were obtained by surface tension and conductivity methods, respectively. The amount of excess concentration () and the average occupied surface area () of three surfactants were calculated. of CC‐G, CC‐T and CC‐L was 2.35 × 10−7 mmol/m2, 2.23 × 10−7 mmol/m2, and 6.16 × 10−7 mmol/m2, separately. of CC‐G was 0.71 nm2/mmol, CC‐T 0.74 nm2/mmol, CC‐L 2.70 nm2/mmol. The Krafft point, emulsification, and foaming power of these surfactants were investigated as well. The Krafft points were 0°C (CC‐G), 5°C (CC‐T) and 20°C (CC‐T). For CC‐G, the separation time of 10 mL double distilled water (DDW) was 43 min, CC‐T 40 min, and CC‐L 37 min. It was inferred from the calculated packing parameters that shape of the micelle of CC‐G, CC‐T were cylindrical in aqueous media, while CC‐L was spheroidal in aqueous media.

Publisher

Wiley

Subject

Surfaces, Coatings and Films,Physical and Theoretical Chemistry,General Chemical Engineering

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