Electrochemical and electronic properties of flower-like MoS2 nanostructures in aqueous and ionic liquid media

RSC Advances ◽  
2015 ◽  
Vol 5 (71) ◽  
pp. 57943-57949 ◽  
Author(s):  
Kavita Pandey ◽  
Pankaj Yadav ◽  
Indrajit Mukhopadhyay

In the present work, we report a facile strategy to synthesize uniform 3D flower-like MoS2 nanostructures prepared by a one-pot hydrothermal method and investigate their supercapacitive behavior.

2019 ◽  
Vol 43 (1) ◽  
pp. 269-276 ◽  
Author(s):  
Ya Chen ◽  
Penghe Su ◽  
Xiaotong Liu ◽  
Hongchi Liu ◽  
Baolin Zhu ◽  
...  

Cu2S–MoS2 nanocomposites are synthesised by a one-step hydrothermal method and show better catalytic activity than Cu2S and MoS2 monomers.


ChemInform ◽  
2011 ◽  
Vol 42 (26) ◽  
pp. no-no
Author(s):  
Lal Dhar S. Yadav ◽  
Garima Garima ◽  
Ritu Kapoor

2010 ◽  
Vol 41 (1) ◽  
pp. 100-112 ◽  
Author(s):  
Lal Dhar S. Yadav ◽  
Garima ◽  
Ritu Kapoor

2014 ◽  
Vol 29 (2) ◽  
pp. 131-136 ◽  
Author(s):  
Kai WANG ◽  
Li-Juan ZHANG ◽  
Zhi-Jian XU ◽  
Bin QI ◽  
Lan-Bo DI ◽  
...  

2020 ◽  
Vol 23 (2) ◽  
pp. 157-167
Author(s):  
Zainab Ehsani-Nasab ◽  
Ali Ezabadi

Objective: A facile and efficient method for synthesis of 3, 4-dihydropyrimidin-2(1H)-ones via Biginelli reaction catalyzed by a novel dicationic Brönsted acidic ionic liquid, [(EtNH2)2SO][HSO4]2, has been successfully developed. Material and Method:: 3, 4-Dihydropyrimidin-2(1H)-ones were synthesized through one-pot condensation of aromatic aldehydes, ethyl acetoacetate, and urea under solvent-free conditions using [(EtNH2)2SO][HSO4]2 as a novel catalyst. The progress of the reaction was monitored by thin-layer chromatography (ethyl acetate / n-hexane = 1 / 5). The products have been characterized by IR, 1H NMR, 13C NMR, and also by their melting points. Results: In this research, a library of dihydropyrimidinone derivatives was synthesized via Biginelli reaction under solvent-free conditions at 120oC using [(EtNH2)2SO][HSO4]2 as a catalyst. Various aromatic aldehydes, as well as heteroaromatic aldehydes, were employed, affording good to high yields of the corresponding products and illustrating the substrate generality of the present method. In addition, the prepared dicationic Brönsted acidic ionic liquid can be easily recovered and reused. Conclusion: 1, 1’-Sulfinyldiethylammonium bis (hydrogen sulfate), as a novel dicationic ionic liquid, can act as a highly efficient catalyst for the synthesis of 3, 4-dihydropyrimidin-2(1H)-ones under solvent-free conditions.


2017 ◽  
Vol 14 (1) ◽  
pp. 61-68
Author(s):  
Rupireddy Ramana ◽  
Dongamanti Ashok ◽  
Boddu Rao ◽  
Chittireddy Reddy

2020 ◽  
Vol 17 ◽  
Author(s):  
Saeid Azimi ◽  
Niloofar Mohamadighader

Abstract: A new solid catalyst was synthesized from an ionic liquid and heterogenised by changing anion reaction. The new heterogeneous acidic catalyst was characterized by SEM images, EDS analysis, AFM images, Ft-IR, HNMR, 13CNMR and Mass Spectroscopy. It was applied to synthesis of tri-arylmethanes throughout one-pot tri-component reactions among aromatic aldehydes, N,N-dimethylaniline and other carbonic nucleophiles such as anisole and indole. Hence, synthesis of convenient and inexpensive micro-heterogeneous catalyst was introduced, the efficiency of which was confirmed. Also, various useful products were synthesized throughout this simple and clean procedure.


2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Mohammad Hossein Abdollahi-Basir ◽  
Boshra Mirhosseini-Eshkevari ◽  
Farzad Zamani ◽  
Mohammad Ali Ghasemzadeh

AbstractA one-pot three component reaction of benzaldehydes, 1H-tetrazole-5-amine, and 3-cyanoacetyl indole in the presence of a new hexamethylenetetramine-based ionic liquid/MIL-101(Cr) metal–organic framework as a recyclable catalyst was explored. This novel catalyst, which was fully characterized by XRD, FE-SEM, EDX, FT-IR, TGA, BET, and TEM exhibited outstanding catalytic activity for the preparation of a range of pharmaceutically important tetrazolo[1,5-a]pyrimidine-6-carbonitriles with good to excellent yields in short reaction time.


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