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- Insights into flibanserin oxidative stress degradation pathway: in silico – in vitro toxicity assessment of its degradates. Mohammed F. El-Behairy, Rasha M. Ahmed, Marwa A. A. Fayed, Samar Mowafy, Inas A. Abdallah
, New J. Chem.
, 2021
, 45
, 2620
- Surface-enhanced Raman spectroscopy for rapid identification and quantification of Flibanserin in different kinds of wine. Qiwen Bao, Hang Zhao, Siqingaowa Han, Chen Zhang, Wuliji Hasi
, Anal. Methods
, 2020
, 12
, 3025
- Flow-oriented synthetic design in the continuous preparation of the aryl piperazine drug flibanserin. Péter Bana, Áron Szigetvári, János Kóti, János Éles, István Greiner
, React. Chem. Eng.
, 2019
, 4
, 652
- Continuous one-flow multi-step synthesis of active pharmaceutical ingredients. Victor R. L. J. Bloemendal, Mathilde A. C. H. Janssen, Jan C. M. van Hest, Floris P. J. T. Rutjes
, React. Chem. Eng.
, 2020
, 5
, 1186
- Antiepileptic drug concentration detection based on Raman spectroscopy and an improved snake optimization-convolutional neural network algorithm. Xinghu Fu, Xiqing Cao, Zizhen Fu, Zhexu Huang, Wa Jin, Guangwei Fu, Weihong Bi
, Anal. Methods
, 2023
, 15
, 6097
- Evolution of flow-oriented design strategies in the continuous preparation of pharmaceuticals. Zsolt Fülöp, Péter Szemesi, Péter Bana, János Éles, István Greiner
, React. Chem. Eng.
, 2020
, 5
, 1527
- N-Heterocyclic carbene catalyzed synthesis of benzotrifluorides from enals and β-trifluoromethylenones. Bang-An Zhou, Chun-Lin Zhang, Song Ye
, Org. Chem. Front.
, 2023
, 10
, 4774
- DABCO bond cleavage for the synthesis of piperazine derivatives. Azim Ziyaei Halimehjani, Elham Badali
, RSC Adv.
, 2019
, 9
, 36386
- Metalated covalent organic frameworks: from synthetic strategies to diverse applications. Qun Guan, Le-Le Zhou, Yu-Bin Dong
, Chem. Soc. Rev.
, 2022
, 51
, 6307
- Machine learning for rapid quantification of trace analyte molecules using SERS and flexible plasmonic paper substrates. Reshma Beeram, Dipanjan Banerjee, Linga Murthy Narlagiri, Venugopal Rao Soma
, Anal. Methods
, 2022
, 14
, 1788