A New Synthesis of the Schiff Base Derived from 2, 3, 4- Trihydroxybenzaldehyde and 4-Aminobenzoic Acid via Airflow Grinding Technology

Author:

Zhao Lisha,Liu Shuangqing,Cai Yanhua,Chen Junyang

Abstract

Abstract Exploring a new reaction system is necessary to widen the application of supersonic speed airflow grinding technology in chemical filed. In this work, the supersonic speed airflow grinding instrument was firstly improved via adding the microwave technology. And then the improved instrument was used to try to synthesize a Schiff base derived from 2, 3, 4- trihydroxybenzaldehyde and 4-aminobenzoic acid, and the molecular structure of synthesized Schiff base was characterized by 1H nuclear magnetic resonance and fourier transform infrared spectrometer. Finally the geometric structure of synthesized Schiff base was optimized by DMol3 density functional theory. The relevant results showed that the airflow grinding technology was a feasible method to synthesize the Schiff base, and HOMO and LUMO of optimized Schiff base were -0.197684 eV and -0.096761 eV, respectively. Additionally, the theoretical calculation further showed that, with increasing of temperature, the entropy, heat capacity and enthalpy of Schiff base increased, but the free energy decreased.

Publisher

IOP Publishing

Subject

General Engineering

Reference10 articles.

1. Mechanism of alkaline hydrolysis of some HO-:π-COO Aracyl derivatives [J];Cevasco;The Journal of Organic Chemistry,1999

2. Studies on solid-state synthesis of a Schiff base derived from p-hydroxybenzaldehyde and p-aminobenzoic acid at supersonic speed airflow and low-heating temperature;Cai;Modern Chemical Industry,2007

3. Reactive milling with the Simoloyer®: environmentally benign quantitative reactions without solvents and wastes;Kauppa;Chemical Engineering Science,2002

4. Preparation of Ultra-fine Calcium Carbonate by a Solvent-free Reaction using Supersonic Airflow and Low Temperatures;Cai;South African Journal of Chemistry-Suid- Afrikaanse Tydskrif vir Chemie,2008

5. Research on preparation of ultra-fine bar ium carbonate by supersonic airstream comm inution method;Cai;Inorganic Chemicals Industry,2007

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