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- Metal–organic ferroelectric complexes: enantiomer directional induction achieved above-room-temperature homochiral molecular ferroelectrics. Yu-Ling Liu, Jia-Zhen Ge, Zhong-Xia Wang, Ren-Gen Xiong
, Inorg. Chem. Front.
, 2020
, 7
, 128
- Studies on the biodegradation of fosfomycin: Growth of Rhizobium
huakuii PMY1 on possible intermediates synthesised chemically. John W. McGrath, Friedrich Hammerschmidt, Werner Preusser, John P. Quinn, Anna Schweifer
, Org. Biomol. Chem.
, 2009
, 7
, 1944
- Novel photo-polymerizable chiral hydrogen-bonded self-assembled complexes: Preparation, characterization and the utilization as a thermal switching reflective color film. Fengjin Chen, Jinbao Guo, Zhijian Qu, Jie Wei
, J. Mater. Chem.
, 2011
, 21
, 8574
- Efficient synthesis of 3,4-ethylenedioxythiophenes (EDOT) by Mitsunobu reaction. Dolores Caras-Quintero, Peter Bäuerle
, Chem. Commun.
, 2002
, 2690
- Adsorptive separation on metal–organic frameworks in the liquid phase. Ben Van de Voorde, Bart Bueken, Joeri Denayer, Dirk De Vos
, Chem. Soc. Rev.
, 2014
, 43
, 5766
- Chiral recognition of diols by complexation with (R)-(+)-1-phenyl-1-propanol: a R2PI approach in supersonic beam. D. Scuderi, A. Paladini, M. Satta, D. Catone, F. Rondino, M. Tacconi, A. Filippi, S. Piccirillo, A. Giardini Guidoni, M. Speranza
, Phys. Chem. Chem. Phys.
, 2003
, 5
, 4570
- Rapid determination of enantiomeric excess: a focus on optical approaches. Diana Leung, Sung Ok Kang, Eric V. Anslyn
, Chem. Soc. Rev.
, 2012
, 41
, 448
- Continuous flow asymmetric synthesis of chiral active pharmaceutical ingredients and their advanced intermediates. Sándor B. Ötvös, C. Oliver Kappe
, Green Chem.
, 2021
, 23
, 6117
- Helical polymer self-assembly and chiral nanostructure formation. Randall A. Scanga, James F. Reuther
, Polym. Chem.
, 2021
, 12
, 1857
- Selective hydrogenolysis and hydrogenation using metal catalysts directly modified with metal oxide species. Keiichi Tomishige, Yoshinao Nakagawa, Masazumi Tamura
, Green Chem.
, 2017
, 19
, 2876