Facile construction of functionalized 4H-chromenevia tandem benzylation and cyclization
Literature Information
Jinmin Fan, Zhiyong Wang
A series of functionalized 4H-chromenes have been constructed by using a novel FeCl3-catalyzed benzylation–cyclization tandem reaction.
Recommended Journals
Related Literature
Facile preparation and cell imaging applications of fluorescent organic nanoparticles that combine AIE dye and ring-opening polymerization
Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Junfeng Hui, Meiying Liu, Zhenguo Chi, Siwei Liu, Jiarui Xu, Yen Wei
DOI: 10.1039/C3PY01143G
Poly(methacrylic acid) complexation of amphotericin B to treat neglected diseases
Ji-won Choi, Denis Martin, Vanessa Yardley, Keith Powell, Antony Godwin
DOI: 10.1039/C3PY01051A
Combined in situ infrared and mass spectrometric analysis of high-energy heavy ion induced degradation of polyvinyl polymers
Wolfgang Ensinger
DOI: 10.1039/C3PY01062G
Anomalous high photovoltages observed in shish kebab-like organic p–n junction nanostructures
Daniel L. Jacobs, Benjamin R. Bunes, Helin Huang, Xiaomei Yang, Ling Zang
DOI: 10.1039/C3PY01026K
Soluble and stable alternating main-chain merocyanine copolymers through quantitative spiropyran–merocyanine conversion
Hartmut Komber, Stefan Müllers, Alexander Held, Michael Walter
DOI: 10.1039/C3PY00853C
Synthesis of water-soluble polyisocyanates with the oligo(ethylene glycol) side-chain as new thermoresponsive polymers
Naoya Sakai, Mingoo Jin, Shin-ichiro Sato, Toshifumi Satoh, Toyoji Kakuchi
DOI: 10.1039/C3PY00972F
A biomimic pH-sensitive polymeric prodrug based on polycarbonate for intracellular drug delivery
Haibo Wang, Yin Wang, Yangjun Chen, Qiao Jin, Jian Ji
DOI: 10.1039/C3PY00861D
Polyoxalates from biorenewable diols via Oxalate Metathesis Polymerization
John J. Garcia, Stephen A. Miller
DOI: 10.1039/C3PY01185B
Facile synthesis of chain end functionalized polyethylenes via epoxide ring-opening and thiol–ene addition click chemistry
Huayi Li, Jin-Yong Dong, Youliang Hu
DOI: 10.1039/C3PY00727H
You might also like
What are the main uses of 1H-Indazole-6-carbonitrile (CAS: 141290-59-7)?
1H-Indazole-6-carbonitrile finds applications in pharmaceuticals, where it serve...
How should waste containing Dioctyl (2E)-2-butenedioate (CAS: 2997-85-5) be handled?
Waste containing Dioctyl (2E)-2-butenedioate (CAS: 2997-85-5) should be collecte...
What industries use Sodium [(1,2-benzoxazol-3-ylmethyl)sulfonyl]azanide (CAS: 68291-98-5)?
Sodium [(1,2-benzoxazol-3-ylmethyl)sulfonyl]azanide is primarily used in pharmac...
Are there alternatives to Dimethyl 4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)-2,6-pyridinedicarboxylate (CAS: 741709-66-0) in synthesis?
Dimethyl 4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)-2,6-pyridinedicarboxyla...
How should waste containing 2-Fluoro-6-hydrazinopyridine (CAS: 80714-39-2) be handled?
Waste containing 2-Fluoro-6-hydrazinopyridine (CAS: 80714-39-2) should be manage...
What is 6-Formyl-2-pyridinecarboxylic acid (CAS: 499214-11-8)?
6-Formyl-2-pyridinecarboxylic acid is an organic compound with the molecular for...
What is the market or research trend for 3-(3,4-dimethoxyphenyl)-2,5-dimethyl-N-(2-morpholin-4-ylethyl)pyrazolo[1,5-a]pyrimidin-7-amine (CAS: 900874-91-1)?
Research trends for this compound indicate a focus on its potential applications...
How is 9H-Tribenzo[b,d,f]azepine (CAS: 29875-73-8) typically synthesized?
9H-Tribenzo[b,d,f]azepine is typically synthesized via a multi-step process invo...
How is 1-Cyclopropyl-7-ethoxy-6-fluoro-8-methoxy-4-oxo-1,4-dihydro-3-quinolinecarboxylic acid (CAS: 1797982-51-4) typically synthesized?
1-Cyclopropyl-7-ethoxy-6-fluoro-8-methoxy-4-oxo-1,4-dihydro-3-quinolinecarboxyli...
How should waste containing Methyl 3-oxo-1,2,3,4-tetrahydro-6-quinoxalinecarboxylate (CAS: 671820-52-3) be handled?
Waste containing Methyl 3-oxo-1,2,3,4-tetrahydro-6-quinoxalinecarboxylate (CAS: ...
Source Journal
Chemical Communications

ChemComm publishes urgent research which is of outstanding significance and interest to experts in the field, while also appealing to the journal’s broad chemistry readership. Our communication format is ideally suited to short, urgent studies that are of such importance that they require accelerated publication. Our scope covers all topics in chemistry, and research at the interface of chemistry and other disciplines (such as materials science, nanoscience, physics, engineering and biology) where there is a significant novelty in the chemistry aspects. Major topic areas covered include: Analytical Chemistry Catalysis Chemical Biology and medicinal chemistry Computational Chemistry and Machine Learning Energy and sustainable chemistry Environmental Chemistry Green Chemistry Inorganic Chemistry Materials Chemistry Nanoscience Organic Chemistry Physical Chemistry Polymer Chemistry Supramolecular Chemistry














