FLP catalysis: main group hydrogenations of organic unsaturated substrates
J Lam, KM Szkop, E Mosaferi… - Chemical Society Reviews, 2019 - pubs.rsc.org
This article is focused on recent developments in main group mediated hydrogenation
chemistry and catalysis using “frustrated Lewis pairs”(FLPs). The broading range of …
chemistry and catalysis using “frustrated Lewis pairs”(FLPs). The broading range of …
Boron: its role in energy‐related processes and applications
Z Huang, S Wang, RD Dewhurst… - Angewandte Chemie …, 2020 - Wiley Online Library
Boron's unique position in the Periodic Table, that is, at the apex of the line separating
metals and nonmetals, makes it highly versatile in chemical reactions and applications …
metals and nonmetals, makes it highly versatile in chemical reactions and applications …
Asymmetric catalysis with FLPs
X Feng, W Meng, H Du - Chemical Society Reviews, 2023 - pubs.rsc.org
Chiral catalysts play a crucial role in the realm of asymmetric catalysis. Since their
breakthrough discovery in 2006, chiral frustrated Lewis pairs (FLPs) have risen as a novel …
breakthrough discovery in 2006, chiral frustrated Lewis pairs (FLPs) have risen as a novel …
Designing effective 'frustrated Lewis pair'hydrogenation catalysts
DJ Scott, MJ Fuchter, AE Ashley - Chemical Society Reviews, 2017 - pubs.rsc.org
The past decade has seen the subject of transition metal-free catalytic hydrogenation
develop incredibly rapidly, transforming from a largely hypothetical possibility to a well …
develop incredibly rapidly, transforming from a largely hypothetical possibility to a well …
In Situ Formation of Frustrated Lewis Pairs in a Water‐Tolerant Metal‐Organic Framework for the Transformation of CO2
Abstract Frustrated Lewis pairs (FLPs) consist of sterically hindered Lewis acids and Lewis
bases, which provide high catalytic activity towards non‐metal‐mediated activation of “inert” …
bases, which provide high catalytic activity towards non‐metal‐mediated activation of “inert” …
Asymmetric hydrogenation of ketones and enones with chiral Lewis base derived frustrated Lewis pairs
B Gao, X Feng, W Meng, H Du - … Chemie International Edition, 2020 - Wiley Online Library
The concept of frustrated Lewis pairs (FLPs) has been widely applied in various research
areas, and metal‐free hydrogenation undoubtedly belongs to the most significant and …
areas, and metal‐free hydrogenation undoubtedly belongs to the most significant and …
Metal-Free sp2-C–H Borylation as a Common Reactivity Pattern of Frustrated 2-Aminophenylboranes
K Chernichenko, M Lindqvist, B Kotai… - Journal of the …, 2016 - ACS Publications
C–H borylation is a powerful and atom-efficient method for converting affordable and
abundant chemicals into versatile organic reagents used in the production of fine chemicals …
abundant chemicals into versatile organic reagents used in the production of fine chemicals …
Metal-Free Borylation of Heteroarenes Using Ambiphilic Aminoboranes: On the Importance of Sterics in Frustrated Lewis Pair C–H Bond Activation
J Légaré Lavergne, A Jayaraman… - Journal of the …, 2017 - ACS Publications
Two novel frustrated Lewis pair (FLP) aminoboranes,(1-Pip-2-BH2-C6H4) 2 (2; Pip=
piperidyl) and (1-NEt2-2-BH2-C6H4) 2 (3; NEt2= diethylamino), were synthesized, and their …
piperidyl) and (1-NEt2-2-BH2-C6H4) 2 (3; NEt2= diethylamino), were synthesized, and their …
Water-resistant FLPs-polymer as recyclable catalysts for selective hydrogenation of alkynes
Abstract The frustrated Lewis pairs (FLPs) have attracted much attention as hydrogenation
catalysts due to their metal-free properties and considerable catalytic activity. However, the …
catalysts due to their metal-free properties and considerable catalytic activity. However, the …
B(C6F5)3-Catalyzed Reductive Amination using Hydrosilanes
V Fasano, JE Radcliffe, MJ Ingleson - ACS Catalysis, 2016 - ACS Publications
In contrast to the established dogma that B (C6F5) 3 is irreversibly poisoned by excess
H2O/amine (or imine) bases, B (C6F5) 3 is actually a water-tolerant catalyst for the reductive …
H2O/amine (or imine) bases, B (C6F5) 3 is actually a water-tolerant catalyst for the reductive …