Chemistry
Dehydrogenation
100%
Formic Acid
84%
Hydrogenation
68%
Carbon Dioxide
46%
Donor
36%
Lewis Acid
32%
Pincer Complex
30%
Formate
25%
Organometallic Chemistry
23%
Rhenium
23%
Cobalt
23%
Manganese
23%
Dinitrogen
23%
Green Chemistry
23%
Copolymerization
23%
Polymerization
23%
Ruthenium
23%
Polyhydroxyalkanoate
23%
Epoxide
23%
Nitride
23%
Tertiary Amine
22%
NMR Spectroscopy
22%
pre-catalyst
19%
Base
18%
Block Copolymer
13%
Mechanistic Study
13%
stability
13%
X-Ray Diffraction
13%
Isopropyl Group
11%
Catalyst Activity
11%
Secondary Amine
9%
Cyclohexene
9%
Monomer
9%
Iron Complex
7%
X-Ray Crystallography
7%
UV/VIS Spectroscopy
7%
Catalytic Reaction
7%
Neutron Diffraction
7%
Carboxamide
7%
Spectroscopy
7%
Oxidative Addition
5%
Turnover Frequency
5%
Metallocene
5%
Coordination Chemistry
5%
Reductive Elimination Reaction
5%
Organometallic Reaction
5%
Homogeneous Catalyst
5%
Energy Storage
5%
IR spectroscopy
5%
Chemical Engineering
Dehydrogenation
69%
Hydrogenation
63%
Formic Acid
53%
Carbon Dioxide
46%
Polyester
46%
Pincer Complex
30%
Biodegradation
23%
Learning System
23%
Supported Iron Catalyst
23%
Amide
7%
Material Science
Industrial Chemical
46%
Polyester
46%
Surface Functionalization
23%
Doping (Additives)
23%
Monolayers
23%
Oxidation Reaction
23%
Polymerization
23%
Leaching
23%
Biodegradation
23%
Design Principle
23%
Copolymerization
23%
Two-Dimensional Material
15%
Block Copolymer
9%
Oxide Compound
9%
Enzymatic Hydrolysis
9%