scholarly journals Solid-State Study of the Structure, Dynamics, and Thermal Processes of Safinamide Mesylate─A New Generation Drug for the Treatment of Neurodegenerative Diseases

Author(s):  
Tomasz Pawlak ◽  
Marcin Oszajca ◽  
Małgorzata Szczesio ◽  
Marek J. Potrzebowski
Crystals ◽  
2017 ◽  
Vol 7 (1) ◽  
pp. 25 ◽  
Author(s):  
Marija Zbačnik ◽  
Katarina Pičuljan ◽  
Jelena Parlov-Vuković ◽  
Predrag Novak ◽  
Andreas Roodt
Keyword(s):  

Materials ◽  
2018 ◽  
Vol 11 (9) ◽  
pp. 1666 ◽  
Author(s):  
Issac Torres ◽  
Mauro Ruiz ◽  
Hung Phan ◽  
Noemi Dominguez ◽  
Jacobo Garcia ◽  
...  

Organic semiconductor materials composed of π–π stacking aromatic compounds have been under intense investigation for their potential uses in flexible electronics and other advanced technologies. Herein we report a new family of seven π–π stacking compounds of silver(I) bis-N-(4-pyridyl) benzamide with varying counterions, namely [Ag(NPBA)2]X, where NPBA is N-(4-pyridyl) benzamine, X = NO3− (1), ClO4− (2), CF3SO3− (3), PF6− (4), BF4− (5), CH3PhSO3− (6), and PhSO3− (7), which form extended π−π stacking networks in one-dimensional (1D), 2D and 3D directions in the crystalline solid-state via the phenyl moiety, with average inter-ring distances of 3.823 Å. Interestingly, the counterions that contain π–π stacking-capable groups, such as in 6 and 7, can induce the formation of mesomorphic phases at 130 °C in dimethylformamide (DMF), and can generate highly branched networks at the mesoscale. Atomic force microscopy studies showed that 2D interconnected fibers form right after nucleation, and they extend from ~30 nm in diameter grow to reach the micron scale, which suggests that it may be possible to stop the process in order to obtain nanofibers. Differential scanning calorimetry studies showed no remarkable thermal behavior in the complexes in the solid state, which suggests that the mesomorphic phases originate from the mechanisms that occur in the DMF solution at high temperatures. An all-electron level simulation of the band gaps using NRLMOL (Naval Research Laboratory Molecular Research Library) on the crystals gave 3.25 eV for (1), 3.68 eV for (2), 1.48 eV for (3), 5.08 eV for (4), 1.53 eV for (5), and 3.55 eV for (6). Mesomorphic behavior in materials containing π–π stacking aromatic interactions that also exhibit low-band gap properties may pave the way to a new generation of highly branched organic semiconductors.


2021 ◽  
pp. 120641
Author(s):  
Daniela Maggioni ◽  
Donato Tunzi ◽  
Pasquale Illiano ◽  
Pierluigi Mercandelli ◽  
Angelo Sironi ◽  
...  

2020 ◽  
Vol 32 (9) ◽  
pp. 3783-3793 ◽  
Author(s):  
Bjorn Joos ◽  
Jordi Volders ◽  
Ricardo Ribeiro da Cruz ◽  
Evelien Baeten ◽  
Mohammadhosein Safari ◽  
...  

2019 ◽  
Vol 25 (28) ◽  
pp. 6941-6954 ◽  
Author(s):  
Keith J. Flanagan ◽  
Stefan S. R. Bernhard ◽  
Shane Plunkett ◽  
Mathias O. Senge
Keyword(s):  

2014 ◽  
Vol 354 ◽  
pp. 33-40
Author(s):  
Bohdan Mochnacki ◽  
R. Szopa

Mathematical description of alloys solidification on the macro scale can be formulated using the one domain method (fixed domain approach). The energy equation corresponding to this model contains the parameter called the substitute thermal capacity (STC). The analytical form of STC results from the assumption concerning the course of the functionfS=fS(T) describing the changes of solid state volumetric fraction and the temperature at the point considered. Between border temperaturesTS,TLthe functionfSchanges from 1 to 0. In this paper the volumetric fractionfS(more preciselyfL= 1-fS) is found using the simple models of macrosegregation (the lever arm rule, the Scheil model). In this way one obtains the formulas determining the course of STC resulting from the certain physical considerations and this approach seems to be closer to the real course of thermal processes proceeding in domain of solidifying alloy.


2015 ◽  
Vol 3 (22) ◽  
pp. 5795-5802 ◽  
Author(s):  
Vinicius Ferraz Guimarães ◽  
Lauro J. Q. Maia ◽  
Isabelle Gautier-Luneau ◽  
Christophe Bouchard ◽  
Antonio Carlos Hernandes ◽  
...  

We present a new family of highly emissive white phosphors.


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