Effect of substituent on the rate of reaction between 4Y‐ArNH2 (Y = H, F, Cl, CH3, OCH3, NH2, N(CH3)2, CF3, CN, NO2) with CH3OO in the gas phase

Author:

Thao Pham Thi Thu12,Trang Vo Quoc3,Hai Pham Thanh3,Thong Nguyen Minh4,Phuong Nguyen Thi Dong1,Oanh Doan Thi Yen5,Nam Pham Cam1

Affiliation:

1. Department of Chemistry, The University of Da Nang ‐ University of Science and Technology 54 Nguyen Luong Bang, Hoa Khanh, Lien Chieu Da Nang 55000 Viet Nam

2. Le Quy Don Gifted High School Quang Tri Dong Ha, Quang Tri 52000 Viet Nam

3. Binh Son Refining and Petrochemical Joint Stock Company (BSR) 208 Hung Vuong, Quang Ngai 53000 Viet Nam

4. The University of Da Nang‐Campus in Kontum Kontum 58000 Viet Nam

5. Publishing House for Science and Technology, Vietnam Academy of Science and Technology 18 Hoang Quoc Viet, Cau Giay Hanoi 10000 Viet Nam

Abstract

AbstractEffect of substituent (Y), including halogen (F and Cl), electron donating (ED) and electron withdrawing (EW) group on the thermoparameters and kinetic behavior of reactions between 4Y‐ArNH2 and CH3OO was computationally studied using density functional theory (DFT) at M05‐2X/6‐311++G(d,p) method in combination with the transition state theory (TST) in Eyringpy program. Based on the three mechanisms of reaction between 4Y‐ArNH2 and CH3COO, namely the hydrogen transfer (HAT/PCET), single electron transfer ‐ proton transfer (SET‐PT), and sequential proton loss electron transfer (SPLET), the effects on the thermoparameters involved in these mechanisms were investigated. ED group reduces the bond dissociation energy (BDE) and ionization energy (IE) then also increases the rate of hydrogen transfer reaction of 4Y‐ArNH2 and CH3OO. Hydrogen atom transfer reaction of ArNH2 with CH3OO at 298.15 K in the gas phase preferably takes place via PCET with the rate constant kPCET of 1.19×10‐19 cm3.molecule‐1.s‐1 is higher than that of kHAT of 2.19×10‐20 cm3.molecule‐1.s‐1. The rate constants of all 4Y‐ArNH2 + CH3OO reactions were also reported and PCET mechanism is dominated with the branching ratio (Γ%) ranging from 73 % to 95 %.

Publisher

Wiley

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