Front cover
Literature Information
A graphical abstract is available for this content
Related Literature
A new insight into the Biginelli reaction: the dawn of multicomponent click chemistry?
Chongyu Zhu, Bin Yang, Yuan Zhao, Changkui Fu, Lei Tao, Yen Wei
DOI: 10.1039/C3PY00553D
Model development for enzymatic reactive crystallization of β-lactam antibiotics: a reaction–diffusion-crystallization approach
Hossein Salami, Colton E. Lagerman, Patrick R. Harris, Matthew A. McDonald, Andreas S. Bommarius, Ronald W. Rousseau, Martha A. Grover
DOI: 10.1039/D0RE00276C
Supramolecular ternary polymer mediated by cucurbituril and cyclodextrin
Qian Wang, Yong Chen, Yu Liu
DOI: 10.1039/C3PY00339F
Carbon material-supported Fe7C3@FeO nanoparticles: a highly efficient catalyst for carbon dioxide reduction with 1-butene
Bing Yan, Luyi Wang, Bolong Wang, Quanxin Chen, Chunjing Liu, Jian Li, Tao Jiang
DOI: 10.1039/D0RE00249F
Effect of a furan π-bridge on polymer coplanarity and performance in organic field effect transistors
Jianyu Yuan, Yaping Zang, Huilong Dong, Guojun Liu, Chong-an Di, Youyong Li, Wanli Ma
DOI: 10.1039/C3PY00501A
Exploration of the effect of 2,6-(t-Bu)2-4-Me-C6H2OH (BHT) in chain shuttling polymerization
Camille Descour, Timo J. J. Sciarone, Dario Cavallo, Tibor Macko, Mauritz Kelchtermans, Ilia Korobkov, Robbert Duchateau
DOI: 10.1039/C3PY00506B
Near infrared fluorescence probe and galactose conjugated amphiphilic copolymer for bioimaging of HepG2 cells and endocytosis
Tao Xing, Xianzhu Yang, Liyi Fu, Lifeng Yan
DOI: 10.1039/C3PY00429E
Investigating interactions between cationic particles and polyelectrolyte brushes with Total Internal Reflection Microscopy (TIRM)
Xiaoling Wei, Xiangjun Gong, To Ngai
DOI: 10.1039/C3PY00512G
Continuous flow Buchwald–Hartwig amination of a pharmaceutical intermediate
Polina Yaseneva, Paul Hodgson, Jacek Zakrzewski, Sebastian Falß, Rebecca E. Meadows, Alexei A. Lapkin
DOI: 10.1039/C5RE00048C
One-step synthesis of multi-alkyne functional hyperbranched polyglycerols by copolymerization of glycidyl propargyl ether and glycidol
Tile Gieshoff, Holger Frey
DOI: 10.1039/C3PY00707C
You might also like
What precautions should be taken when handling 2-Chloro-1,2-bis(4-methylphenyl)ethanone (CAS: 71193-32-3)?
When handling 2-Chloro-1,2-bis(4-methylphenyl)ethanone (CAS: 71193-32-3), it is ...
What industries use 4-Ethoxy-3-(5-methyl-4-oxo-7-propyl-1,4-dihydroimidazo[5,1-f][1,2,4]triazin-2-yl)benzenesulfonyl chloride (CAS: 224789-26-8)?
4-Ethoxy-3-(5-methyl-4-oxo-7-propyl-1,4-dihydroimidazo[5,1-f][1,2,4]triazin-2-yl...
How should Methyl 3-Oxo-4-Androsten-17-Carboxylate (CAS: 2681-55-2) be stored?
Methyl 3-Oxo-4-Androsten-17-Carboxylate (CAS: 2681-55-2) should be stored in a c...
What are the main uses of (R)-3-Amino-4-(3-hexylphenylamino)-4-oxobutylphosphonic acid (CAS: 909725-61-7)?
(R)-3-Amino-4-(3-hexylphenylamino)-4-oxobutylphosphonic acid is primarily used i...
What regulatory guidelines apply to 2-Methyl-2-propanyl 3-amino-3-carbamoyl-1-azetidinecarboxylate (CAS: 1254120-14-3)?
2-Methyl-2-propanyl 3-amino-3-carbamoyl-1-azetidinecarboxylate (CAS: 1254120-14-...
Are there alternatives to (E)-4-(tert-Butoxy)-4-oxobut-2-enoic acid (CAS: 135355-96-3) in synthesis?
There are alternative reagents that can be used in synthesis instead of (E)-4-(t...
What are the physical and chemical properties of [2-(3-Chlorophenyl)-1,3-thiazol-4-yl]methanol (CAS: 121202-20-8)?
[2-(3-Chlorophenyl)-1,3-thiazol-4-yl]methanol (CAS: 121202-20-8) is a crystallin...
What is the market or research trend for Methyl (2S)-[(4S)-2,2-dimethyl-1,3-dioxolan-4-yl]{[(4-methylphenyl)sulfonyl]oxy}acetate (CAS: 166249-17-8)?
The market and research trends for Methyl (2S)-[(4S)-2,2-dimethyl-1,3-dioxolan-4...
What is the market or research trend for 1-Bromo-2-isocyanatoethane (CAS: 42865-19-0)?
The market for 1-Bromo-2-isocyanatoethane (CAS: 42865-19-0) is driven by its use...
What are the main uses of 4-Nitro-D-phenylalanine hydrochloride (CAS: 147065-06-3)?
4-Nitro-D-phenylalanine hydrochloride (CAS: 147065-06-3) is primarily used in re...
Source Journal
Organic & Biomolecular Chemistry

Organic & Biomolecular Chemistry (OBC) publishes original and high impact research and reviews in organic chemistry. We welcome research that shows new or significantly improved protocols or methodologies in total synthesis, synthetic methodology or physical and theoretical organic chemistry as well as research that shows a significant advance in the organic chemistry or molecular design aspects of chemical biology, catalysis, supramolecular and macromolecular chemistry, theoretical chemistry, mechanism-oriented physical organic chemistry, medicinal chemistry or natural products. Articles published in the journal should report new work which makes a highly-significant impact in the field. Routine and incremental work is generally not suitable for publication in the journal. More details about key areas of our scope are below. In all cases authors should include in their article clear rationale for why their research has been carried out.














