Javascript must be enabled to continue!
First and Second Dissociation Enthalpies in Bi-Component Crystals Consisting of Maleic Acid and L-Phenylalanine
View through CrossRef
The energetics of the stepwise dissociation of a A:B2 bi-component crystal, according to A:B2(cr) → A:B(cr) + B(cr) and A:B(cr) → A(cr) + B(cr), was investigated using MA:Phe2 and MA:Phe (MA = maleic acid; Phe = L-phenylalanine) as model systems. The enthalpy changes associated with these sequential processes and with the overall dissociation reaction A:B2(cr) → A(cr) + 2B(cr) were determined by solution calorimetry. It was found that they are all positive, indicating that there is a lattice enthalpy gain when MA:Phe2 is formed, either from the individual precursors or by adding Phe to MA:Phe. Single-crystal X-ray diffraction (SCXRD) analysis showed that MA:Phe2 is best described as a protic salt containing a maleate anion (MA−) and two non-equivalent L-phenylalanine units, both linked to MA− by NH···O hydrogen bonds (H-bond): one of these units is protonated (HPhe+) and the other zwitterionic (Phe±). Only MA− and HPhe+ molecules are present in the MA:Phe lattice. In this case, however, NH···O and OH···O H-bonds are formed between each MA− unit and two HPhe+ molecules. Despite these structural differences, the enthalpy cost for the removal of the zwitterionic Phe± unit from the MA:Phe2 lattice to yield MA:Phe is only 0.9 ± 0.4 kJ mol−1 higher than that for the dissociation of MA:Phe, which requires a proton transfer from HPhe+ to MA− and the rearrangement of L-phenylalanine to the zwitterionic, Phe±, form. Finally, a comparison of the dissociation energetics and structures of MA:Phe and of the previously reported glycine maleate (MA:Gly) analogue indicated that parameters, such as the packing coefficient, density, hydrogen bonds formed, or fusion temperature, are not necessarily good descriptors of dissociation enthalpy or lattice enthalpy trends when bi-component crystals with different molecular composition are being compared, even if the stoichiometry is the same.
Title: First and Second Dissociation Enthalpies in Bi-Component Crystals Consisting of Maleic Acid and L-Phenylalanine
Description:
The energetics of the stepwise dissociation of a A:B2 bi-component crystal, according to A:B2(cr) → A:B(cr) + B(cr) and A:B(cr) → A(cr) + B(cr), was investigated using MA:Phe2 and MA:Phe (MA = maleic acid; Phe = L-phenylalanine) as model systems.
The enthalpy changes associated with these sequential processes and with the overall dissociation reaction A:B2(cr) → A(cr) + 2B(cr) were determined by solution calorimetry.
It was found that they are all positive, indicating that there is a lattice enthalpy gain when MA:Phe2 is formed, either from the individual precursors or by adding Phe to MA:Phe.
Single-crystal X-ray diffraction (SCXRD) analysis showed that MA:Phe2 is best described as a protic salt containing a maleate anion (MA−) and two non-equivalent L-phenylalanine units, both linked to MA− by NH···O hydrogen bonds (H-bond): one of these units is protonated (HPhe+) and the other zwitterionic (Phe±).
Only MA− and HPhe+ molecules are present in the MA:Phe lattice.
In this case, however, NH···O and OH···O H-bonds are formed between each MA− unit and two HPhe+ molecules.
Despite these structural differences, the enthalpy cost for the removal of the zwitterionic Phe± unit from the MA:Phe2 lattice to yield MA:Phe is only 0.
9 ± 0.
4 kJ mol−1 higher than that for the dissociation of MA:Phe, which requires a proton transfer from HPhe+ to MA− and the rearrangement of L-phenylalanine to the zwitterionic, Phe±, form.
Finally, a comparison of the dissociation energetics and structures of MA:Phe and of the previously reported glycine maleate (MA:Gly) analogue indicated that parameters, such as the packing coefficient, density, hydrogen bonds formed, or fusion temperature, are not necessarily good descriptors of dissociation enthalpy or lattice enthalpy trends when bi-component crystals with different molecular composition are being compared, even if the stoichiometry is the same.
Related Results
SIMPLE FORMS OF ZIRCON CRYSTALS FROM CRYSTALLINE ROCKS OF THE UKRAINIAN SHIELD AND THEIR MORPHOLOGICAL TYPES
SIMPLE FORMS OF ZIRCON CRYSTALS FROM CRYSTALLINE ROCKS OF THE UKRAINIAN SHIELD AND THEIR MORPHOLOGICAL TYPES
The main basics in geometric crystallography of zircon, developed by many researchers in the 18th - 20th centuries, are briefly described. The data of goniometric study of zircon f...
Methods to Induce Dissociation and Their Effects on Intrusions and Memory: A Randomized Controlled Trauma-Film Study
Methods to Induce Dissociation and Their Effects on Intrusions and Memory: A Randomized Controlled Trauma-Film Study
Background: Peritraumatic dissociation is thought to contribute to posttraumatic symptoms like intrusions and memory disturbances. However, trauma-analogue studies that examined ef...
Mechanistic Investigations for Electrocatalytic Oxidation of Furfural Using Density Functional Theory
Mechanistic Investigations for Electrocatalytic Oxidation of Furfural Using Density Functional Theory
Mechanistic Investigations for Electrocatalytic Oxidation of Furfural Using Density Functional Theory
Naveen Agrawal,a Li Gong,a,b Alex Roman,c
...
Ice Growth and Platelet Crystals in Antarctica
Ice Growth and Platelet Crystals in Antarctica
<p>First-year land-fast sea ice growth in both the Arctic and the Antarctic is characterised by the formation of an initial ice cover, followed by the direct freezing of seaw...
The Regularities of the Electrolytic Dissociation of 1,3-Cyclohexanedicarboxylic Acids
The Regularities of the Electrolytic Dissociation of 1,3-Cyclohexanedicarboxylic Acids
The Regularities of the Electrolytic Dissociation of 1,3-Cyclohexanedicarboxylic Acids
E. Kvaratskhelia, R. Kvaratskhelia and R. Kurtanidze
...
Metabolic physiology of aroma‐producing Kluyveromyces marxianus
Metabolic physiology of aroma‐producing Kluyveromyces marxianus
AbstractKluyveromyces marxianus has a high potential for industrial production of aroma compounds, such as 2‐phenylethanol, which is derived in a bioconversion from L‐phenylalanine...
The Electrolytic Dissociation of 1,4-Cyclohexanedicarboxylic Acid
The Electrolytic Dissociation of 1,4-Cyclohexanedicarboxylic Acid
Cyclohexanedicarboxylic acids are widely used as the members of the positive resist radiation-sensitive composition, the coating resinous compositions, for production the high-soli...
Mechanoluminescence of Coloured Alkali Halide Crystals
Mechanoluminescence of Coloured Alkali Halide Crystals
The present paper reports both the experimental and mathematical aspects of elastico-mechanoluminescence (EML), plastico-mechanoluminescence (PML) and fracto-mechanoluminescence (F...

