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- pH effects in the acetaldehyde–ammonia reaction. Emanuele Moioli, Leo Schmid, Peter Wasserscheid, Hannsjörg Freund
, React. Chem. Eng.
, 2017
, 2
, 382
- Tris(8-methoxy-2-quinolylmethyl)amine (8-MeOTQA) as a highly fluorescent Zn2+ probe prepared by convenient C
3-symmetric tripodal amine synthesis. Yuji Mikata, Yuki Nodomi, Risa Ohnishi, Asako Kizu, Hideo Konno
, Dalton Trans.
, 2015
, 44
, 8021
- Clean synthesis of acetaldehyde oxime through ammoximation on titanosilicate catalysts. Jianghong Ding, Le Xu, Yejun Yu, Haihong Wu, Shijie Huang, Yulin Yang, Jing Wu, Peng Wu
, Catal. Sci. Technol.
, 2013
, 3
, 2587
- A new reaction route for the synthesis of 2-methyl-5-ethylpyridine. Emanuele Moioli, Leo Schmid, Peter Wasserscheid, Hannsjörg Freund
, React. Chem. Eng.
, 2017
, 2
, 754
- The mechanism of hexamethylenetetramine (HMT) formation in the solid state at low temperature. Vassilissa Vinogradoff, Albert Rimola, Fabrice Duvernay, Gregoire Danger, Patrice Theulé, Thierry Chiavassa
, Phys. Chem. Chem. Phys.
, 2012
, 14
, 12309
- Kinetic modelling of reactions for the synthesis of 2-methyl-5-ethyl pyridine. Emanuele Moioli, Leo Schmid, Peter Wasserscheid, Hannsjörg Freund
, React. Chem. Eng.
, 2021
, 6
, 1254
- 206. The kinetics of the decomposition of acetaldehyde-ammonia in aqueous acid solution, and some notes on the aldines. David T. Lewis
, J. Chem. Soc.
, 1939
, 968
- Bubble-template synthesis of WO3·0.5H2O hollow spheres as a high-activity catalyst for catalytic oxidation of benzyl alcohol to benzaldehyde. Huixiang Wang, Xiaobo Ren, Zhong Liu, Dong Jiang, Baoliang Lv
, CrystEngComm
, 2019
, 21
, 1026
- 399. Acyl isothiocyanates. Part IV. The reaction between acetaldehyde ammonia and some isothiocyanates. D. T. Elmore, J. R. Ogle
, J. Chem. Soc.
, 1960
, 1961
- LIV.—Action of acetaldehydeammonia on quinones. Praphulla Chandra Ghosh
, J. Chem. Soc., Trans.
, 1917
, 111
, 608