TY - JOUR
T1 - A preorganized dual H-bond donor promotes benzoic acid active in the polymerization of δ-valerolactone
AU - Sun, Herui
AU - Xu, Songquan
AU - Li, Zhenjiang
AU - Xu, Jiaxi
AU - Liu, Jingjing
AU - Wang, Xin
AU - Wang, Haixin
AU - Dong, He
AU - Liu, Yaya
AU - Guo, Kai
N1 - Publisher Copyright:
© The Royal Society of Chemistry 2017.
PY - 2017/9/28
Y1 - 2017/9/28
N2 - Ring-opening polymerization (ROP) of lactones catalyzed by a (super)strong Brønsted acid offers a valuable approach to important biodegradable aliphatic polyesters. However, the need for a mild acidic catalyst in ROP has been long sought after but unmet. Here, we describe a truly weak Brønsted acid, benzoic acid, in combination with a dual H-bond donor (dHBD), which catalyzes the ROP of δ-valerolactone (VL) in solution at room temperature. A unique preorganized sulfonyl guanidine type of dHBD, 3-amino-1,2,4-benzothiadiazine-1,1-dioxide (ABTD), proves optimal to work with benzoic acid as a cocatalyst, promoting benzoic acid activity in the ROP of VL. Poly-δ-valerolactones of predictable molecular weights (from 2.13 to 9.33 kg mol-1) and narrow dispersities (D ≤ 1.16) are synthesized. The controlled character of the ROP is verified by NMR, SEC, and MALDI-ToF MS measurements. NMR titration experiments imply that ABTD preferentially binds with benzoic acid, and the benzoic acid/ABTD pair protonates the VL monomer. Weak benzoic acid is not weak for the first time in the efficient cationic ROP of VL by the protonation mechanism.
AB - Ring-opening polymerization (ROP) of lactones catalyzed by a (super)strong Brønsted acid offers a valuable approach to important biodegradable aliphatic polyesters. However, the need for a mild acidic catalyst in ROP has been long sought after but unmet. Here, we describe a truly weak Brønsted acid, benzoic acid, in combination with a dual H-bond donor (dHBD), which catalyzes the ROP of δ-valerolactone (VL) in solution at room temperature. A unique preorganized sulfonyl guanidine type of dHBD, 3-amino-1,2,4-benzothiadiazine-1,1-dioxide (ABTD), proves optimal to work with benzoic acid as a cocatalyst, promoting benzoic acid activity in the ROP of VL. Poly-δ-valerolactones of predictable molecular weights (from 2.13 to 9.33 kg mol-1) and narrow dispersities (D ≤ 1.16) are synthesized. The controlled character of the ROP is verified by NMR, SEC, and MALDI-ToF MS measurements. NMR titration experiments imply that ABTD preferentially binds with benzoic acid, and the benzoic acid/ABTD pair protonates the VL monomer. Weak benzoic acid is not weak for the first time in the efficient cationic ROP of VL by the protonation mechanism.
UR - http://www.scopus.com/inward/record.url?scp=85029773238&partnerID=8YFLogxK
U2 - 10.1039/c7py01192j
DO - 10.1039/c7py01192j
M3 - 文章
AN - SCOPUS:85029773238
SN - 1759-9954
VL - 8
SP - 5570
EP - 5579
JO - Polymer Chemistry
JF - Polymer Chemistry
IS - 36
ER -