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    Influence of Intramolecular Hydrogen Bonding on Ability of Leaving Group in SN2 Reactions

    , M.Sc. Thesis Sharif University of Technology Ahmadi, Aliakbar (Author) ; Fattahi, Alireza (Supervisor)
    Abstract
    Many of the significant reactions in chemistry and biology are related to bimolecular nucleophilic substitution (SN2) reactions which have been studied first by Hughes and Ingold in the 1930s. Afterward, many organic chemists have continued this work. Up to now, numerous experimental kinetic and theoretical researches have studied the mechanism of these reactions. Since most SN2 reactions occur in solution, a large number of these studies have been devoted to the solvent effects. One of these effects that has been examined extremely is H-bonding via protic solvents that lowers the energy of an anionic nucleophile relative to the transition state, in which the charge is more diffuse, and... 

    Theoretical Investigation of Hydrogen Bonding Effects on Interaction of Metal Nanoclusters with Histidine, Oxidation of Olefins by MnO4– & Acidity Enhancement of Alcohols

    , Ph.D. Dissertation Sharif University of Technology Jebeli Javan, Marjan (Author) ; Fattahi, Alireza (Supervisor) ; Mahmoodi Hashemi, Mohammad (Supervisor) ; Jamshidi, Zahra (Supervisor)
    Abstract
    This thesis is divided into three parts: In part I, interactions of neutral and anionic forms of histidine with coinage metal nano clusters M3 (M = Au, Ag and Cu) are investigated. Results demonstrate that nonconventional M…H-O hydrogen bonds and M-X bonds (X = N, O) play stabilization roles in interactions of histidine and metal nano clusters. Presence of negative charge in ligand leads to increase of binding energy of complexes. In the next step, the effects of coinage metal nano clusters on the gas-phase acidity of weak organic acid (histidine) have been explored. The acidity of isolated histidine is compared with the acidity of its Au3–, Ag3– and Cu3–complexed species. Moreover, pKa... 

    Theoretical Investigation of Hydrogen Bonding Effects on Interaction of Metal Nanoclusters with Biomolecules & Acidity Enhancement of Alcohols

    , Ph.D. Dissertation Sharif University of Technology Ali Akbar Tehrani, Zahra (Author) ; Fattahi, Alireza (Supervisor) ; Mahmoodi Hashemi, Mohammad (Supervisor) ; Jamshidi, Zahra (Co-Advisor)
    Abstract
    This thesis is divided into three parts: In part I, conformational properties of neutral, anionic, cationic and zwitterionic forms of glutathione tripeptide were investigated by means of DFT-B3LYP method with 6-31+G (d,p) basis set. Results show that glutathione is a very flexible molecule and its conformational energy landscape is strongly influenced by forming intramolecular hydrogen bond and its charge. Conformation of each amino acid in glutathione tripeptide depends on its orientation within the peptide sequence in addition to the conformation of other amino acids within the chain. Investigation of intramolecular hydrogen bonds in these conformers by means of AIM analysis demonstrates... 

    Theoretical Investigation of Hydrogen Bonding Effects on Acidity Enhancement of Alkyl sulfonic Acids and Hydroxy Alkyl Sulfonic Acids in Gas and Solution Phase

    , M.Sc. Thesis Sharif University of Technology Najdian, Atena (Author) ; Fattahi, Ali Reza (Supervisor) ; Hormozi-Nezhad, Mohammad Reza (Supervisor)
    Abstract
    Hydrogen bonding is an important weak interaction encountered in gas, liquid, as well as solid phases. The hydrogen bond plays a very vital role in many life processes and is one of the most frequently used terms in chemistry and biology.
    Polyols or polyhydric alcohols are, strictly speaking, simply organic chemicals containing more than two hydroxyl groups. Each hydroxyl is attached to separate carbon atoms of an aliphatic skeleton.They may also contain ester, ether, amide, acrylic, metal, metalloid and other functionalities; along with hydroxyl groups. Polyols are obtained from many plant and animal sources and are synthesized by a variety of methods. Among important properties of... 

    What roles do boron substitutions play in structural, tautomeric, base pairing and electronic properties of uracil? NBO & AIM analysis

    , Article Journal of Physical Organic Chemistry ; Volume 25, Issue 9 , 2012 , Pages 787-796 ; 08943230 (ISSN) AliakbarTehrani, Z ; Abedin, A ; Shakourian Fard, M ; Fattahi, A ; Sharif University of Technology
    Wiley  2012
    Abstract
    The synthesis of modified versions of deoxyribonucleic acid is an area that is receiving much attention. The replacement of the nitrogen atom on the nucleobases with boron atom has provided insight into deoxyribonucleic acid and ribonucleic acid stability, recognition, and replication at the atomic level. In the present research, we investigated a detailed density functional theory study of the structural, tautomeric, base-pairing ability, bond dissociation energy, and electronic properties of two boron analogues (i.e., boron substitutions at 4-position and 5-position of uracil) of uracil nucleobase. The effects of these modifications on theirs acid-base properties have been considered. Our... 

    Thermochemical properties of some vinyl chloride-induced DNA lesions: Detailed view from NBO & AIM analysis

    , Article Structural Chemistry ; Volume 23, Issue 6 , 2012 , Pages 1987-2001 ; 10400400 (ISSN) Tehrani, Z. A ; Torabifard, H ; Fattahi, A ; Sharif University of Technology
    2012
    Abstract
    Etheno-damaged DNA adducts such as 3,N4- ethenocytosine, N 2,3-ethenoguanine, and 1,N2-ethenoguanine are associated with carcinogenesis and cell death. These inevitable damages are counteracted by glycosylase enzymes, which cleave damaged nucleobases from DNA. Escherichia coli alkyl purine DNA glycosylase is the enzyme responsible for excising damaged etheno adducts from DNA in humans. In an effort to understand the intrinsic properties of these molecules, we examined gasphase acidity values and proton affinities (PA) of multiple sites of these molecules as well as equilibrium tautomerization and base pairing properties by quantum mechanical calculations. We also used calculations to compare... 

    Theoretical study of borazine: cation-π (Be 2+, Mg 2+, and Ca 2+) interaction

    , Article Structural Chemistry ; 2012 , Pages 1-7 ; 10400400 (ISSN) Fathi Rasekh, M ; Sharif University of Technology
    2012
    Abstract
    The geometries of the complexes of Be 2+, Mg 2+, and Ca 2+ metal cations with borazine ring were studied. The complexes were optimized at the B3LYP level and the 6-311++G(d,p) basis set. Then, the interaction energies corrected by basis set super position error were calculated in the same level. The results show that interaction energy is strongly dependent on the charge-to-size ratio of the cation. Therefore, Be 2+ cation has the most interaction energy value with respect to Mg 2+ and Ca 2+ metal cations. Natural bond orbital analysis was performed to calculate the charge transfer and natural population analysis of the complexes. Quantum theory of atoms in molecules was also applied to... 

    Theoretical investigation on the structure and properties of alumazine⋯m complexes (M = Li+, Na+, K+, Be2+, Mg2+, and Ca2+)

    , Article Journal of Theoretical and Computational Chemistry ; Volume 12, Issue 5 , August , 2013 ; 02196336 (ISSN) Rasekh, M. F ; Sharif University of Technology
    2013
    Abstract
    The nature of alumazine⋯M (M = Li+, Na+, K+, Be2+, Mg2+, AND Ca2+) interactions was studied by ab initio calculations. The interaction energies were calculated at MP2/6-311++G(d,p)//B3LYP/6-311++G(d,p) level. The calculations suggest that the size and charge of cation are two important factors that affect the interaction energy, charge transfer values and the variation in aromaticity of alumazine ring upon complexation. The theory of atoms in molecules (AIM) and natural bond orbital (NBO) analyses of complexes indicate that the variation of densities and the extent of charge shifts upon complexation correlate well with the obtained interaction energies. Finally, nucleus independent chemical... 

    Theoretical investigation on the structural and electronic properties of complexes formed by thymine and 2'-deoxythymidine with different anions

    , Article Structural Chemistry ; Volume 23, Issue 1 , July , 2012 , Pages 17-28 ; 10400400 (ISSN) Shakourian Fard, M ; Fattahi, A ; Sharif University of Technology
    2012
    Abstract
    Hydrogen bonding interactions between thymine nucleobase and 2'-deoxythymidine nucleoside (dT) with some biological anions such as F - (fluoride), Cl - (chloride), OH - (hydroxide), and NO 3 - (nitrate) have been explored theoretically. In this study, complexes have been studied by density functional theory (B3LYP method and 6-311++G (d,p) basis set). The relevant geometries, energies, and characteristics of hydrogen bonds (H-bonds) have been systematically investigated. There is a correlation between interaction energy and proton affinity for complexes of thymine nucleobase. The nature of all the interactions has been analyzed by means of the natural bonding orbital (NBO) and quantum theory... 

    The intramolecular cation-π interaction of some aryl amines and its drastic influence on the basicity of them: AIM and NBO analysis

    , Article Computational and Theoretical Chemistry ; Vol. 1036 , May , 2014 , pp. 51-60 ; ISSN: 2210271X Kheirjou, S ; Fattahi, A ; Hashemi, M. M ; Sharif University of Technology
    Abstract
    In this study, drastic influence of the intramolecular cation-π interaction on the basicity of selected amines has been considered. The optimized minimum energy geometries of different studied amines and their protonated structures were determined by using DFT calculations at the B3LYP/6-311++G(d,p) level of theory. Geometry optimizations indicate that the most stable structures of protonated amines are stabilized by intramolecular cation-π interaction. The proton affinity (PA) of selected amines is controlled by the strength of intramolecular cation-π interaction of ammonium with aromatic ring. These cation-π interactions strongly influence the basicity of amines. Natural bond orbital (NBO)... 

    Structural and theoretical exploring of noncovalent interactions in Chlorido- and Nitrito-rhenium(I) tricarbonyl complexes bearing 2,3-Butadiene-bis(2-nitrobenzylidene)hydrazine Ligand: Intramolecular Re–κ1-endo-ONO(lone pair)…π*(C[tbnd]O) interaction

    , Article Inorganica Chimica Acta ; Volume 540 , 2022 ; 00201693 (ISSN) Kia, R ; Heshmatnia, F ; Sharif University of Technology
    Elsevier B.V  2022
    Abstract
    Herein, we report the synthesis, characterization and combined structural and full computational analysis of noncovalent interactions in a new hydrazine ligand and its two chlorido- and endo-nitrito-rhenium(I) tricarbonyl complexes. The analysis of crystal structures has been accompanied by comprehensive computational studies of the noncovalent interactions utilizing the quantum theory of atoms in molecules (QTAIM), natural bond orbitals (NBO), independent gradient model (IGM), and electron localization function (ELF) to shed light on the nature of the interactions. On the other hand, comprehensive energy decomposition analysis (EDA) by extended transition state coupled with natural orbitals... 

    Probing solvent-solvent and solute-solvent interactions in surfactant binary mixtures: Solvatochromic parameters, preferential solvation, and quantum theory of atoms in molecules analysis

    , Article RSC Advances ; Volume 6, Issue 22 , 2016 , Pages 18515-18524 ; 20462069 (ISSN) Kohantorabi, M ; Fakhraee, M ; Salari, H ; Gholami, M. R ; Sharif University of Technology
    Royal Society of Chemistry 
    Abstract
    The behaviour of solvatochromic absorbance probes (4-nitroaniline, 4-nitroanisole, and Reichardt's dye) within binary mixtures of polyethylene glycol p-(1,1,3,3-tetramethylbutyl)-phenyl ether (Triton X-100 or TX-100)/organic solvents (2-propanol, hexanol, butyl acetate, THF, toluene, and p-xylene) was extensively explored by using solvatochromism and the quantum theory of atoms in molecules (QTAIM). To be more precise, the polarity parameters, ET N, and Kamlet-Taft parameters, such as the hydrogen bond donor ability (HBD) (α), hydrogen bond acceptor ability (HBA) (β), and dipolarity/polarizability (π∗), have been investigated in selected mixtures at 298 K. All binary mixtures exhibit complex... 

    On the binding of Mg 2+, Ca 2+, Zn 2+ and Cu + metal cations to 2 ′ -deoxyguanosine: Changes on sugar puckering and strength of the N-glycosidic bond

    , Article Scientia Iranica ; Volume 18, Issue 6 , December , 2011 , Pages 1343-1352 ; 10263098 (ISSN) Ahmadi, M. S ; Fattahi, A ; Sharif University of Technology
    2011
    Abstract
    The binding of Mg 2+, Ca 2+, Zn 2+ and Cu + metal cations to 2′-deoxyguanosine has been analyzed, using the hybrid B3LYP, Density Functional Theory (DFT) method and 6311++G(d,p) orbital basis sets. Coordination geometries, absolute metal ion affinities, and free energies for the most stable complexes formed by Mg 2+, Ca 2+, Zn 2+ and Cu + with the nucleoside, 2′-deoxyguanosine, have been determined. Furthermore, the influences of metal cationization on the strength of the N-glycosidic bond, torsion angles and angle of Pseudorotation (P) have been studied. With respect to the results, it has been found that metal binding significantly changes the values of the phase angle of Pseudorotation... 

    Molecular structure and character of bonding of mono and divalent metal cations (Li +, Na +, K +, Mg 2+, Ca 2+, Zn 2+, and cu +) with guanosine: AIM and NBO analysis

    , Article Structural Chemistry ; Volume 23, Issue 3 , June , 2012 , Pages 613-626 ; 10400400 (ISSN) Ahmadi, M. S ; Shakourian Fard, M ; Fattahi, A ; Sharif University of Technology
    2012
    Abstract
    The B3LYP/6-311++G (d,p) density functional approach was used to study the gas-phase metal affinities of Guanosine (ribonucleoside) for the Li +, Na +, K +, Mg 2+, Ca 2+, Zn 2+, and Cu + cations. In this study we determine coordination geometries, binding strength, absolute metal ion affinities, and free energies for the most stable products. We have also compared the results for Guanosine, with our previously reported results for 20-Deoxyguanosine. Based on the results, it is obvious that MIA is strongly dependent on the charge-to-size ratio of the cation. Guanosine interacts more strongly with Zn 2+ than do with Mg 2+, Ca 2+, and Cu? and therefore stronger interactions lead to higher MIA.... 

    Meta hybrid density functional theory study of adsorption of imidazolium and ammonium based ionic liquids on graphene sheet

    , Article Journal of Physical Chemistry C ; Volume 119, Issue 13 , March , 2015 , Pages 7095-7108 ; 19327447 (ISSN) Shakourian Fard, M ; Jamshidi, Z ; Bayat, A ; Kamath, G ; Sharif University of Technology
    American Chemical Society  2015
    Abstract
    In this study, two types of ionic liquids (ILs) based on 1 butyl 3 methylimidazolium [Bmim]+ and butyltrimethylammonium [Btma]+ cations, paired to tetrafluoroborate [BF4], hexafluorophosphate [PF6], dicyanamide [DCA], and bis(trifluoromethylsilfonyl)imide [Tf2N] anions, were chosen as adsorbates to investigate the influence of cation and anion type on the adsorption of ILs on the graphene surface. The adsorption process on the graphene surface (circumcoronene) was studied using M06 2X/cc pVDZ level of theory. Empirical dispersion correction (D3) was also added to the M06 2X functional to investigate the effects of dispersion on the binding energy values. The graphene···IL configurations,... 

    Ionic liquid based on α-amino acid anion and N7,N9-dimethylguaninium cation ([dMG][AA]): Theoretical study on the structure and electronic properties

    , Article Journal of Physical Chemistry A ; Volume 116, Issue 22 , April , 2012 , Pages 5436-5444 ; 10895639 (ISSN) Shakourian Fard, M ; Fattahi, A ; Bayat, A ; Sharif University of Technology
    2012
    Abstract
    The interactions between five amino acid based anions ([AA] - (AA = Gly, Phe, His, Try, and Tyr)) and N7,N9-dimethylguaninium cation ([dMG] +) have been investigated by the hybrid density functional theory method B3LYP together with the basis set 6-311++G(d,p). The calculated interaction energy was found to decrease in magnitude with increasing side-chain length in the amino acid anion. The interaction between the [dMG] + cation and [AA] - anion in the most stable configurations of ion pairs is a hydrogen bonding interaction. These hydrogen bonds (H bonds) were analyzed by the quantum theory of atoms in molecules (QTAIM) and natural bond orbital (NBO) analysis. Finally, several correlations... 

    Ionic liquid based on 6-amino-6-deoxy hexopyranose cation and BF4 ¯, PF6 ¯, and ClO4 ¯ as anions: a DFT study on the structural and electronic properties

    , Article Journal of Physical Organic Chemistry ; Volume 31, Issue 5 , 2018 ; 08943230 (ISSN) Kheirjou, S ; Fattahi, A ; Sharif University of Technology
    John Wiley and Sons Ltd  2018
    Abstract
    In this study, the structural and electronic properties of a carbohydrate-based (6-amino-6-deoxy hexopyranose [ADHP]) ionic liquid were explored. The interactions among 3 anions (BF4 ¯, PF6 ¯, and ClO4 ¯) and ADHP as cation were investigated at B3LYP/6-311++G(d,p) level. Based on the calculated interaction energy, it was found that PF6 ¯ anion has the highest interaction energy with ADHP. It was found that the hydrogen bonds play an important role in the interaction of ion pairs. The nature of hydrogen bonds in the optimized ion pars was analyzed by using natural bond orbital analysis and the quantum theory of atoms in molecules. The linear relationship between electron density at the bond... 

    Interactions of glutathione tripeptide with gold cluster: Influence of intramolecular hydrogen bond on complexation behavior

    , Article Journal of Physical Chemistry A ; Volume 116, Issue 17 , 2012 , Pages 4338-4347 ; 10895639 (ISSN) Tehrani, Z. A ; Jamshidi, Z ; Javan, M. J ; Fattahi, A ; Sharif University of Technology
    2012
    Abstract
    Understanding the nature of the interaction between metal nanoparticles and biomolecules has been important in the development and design of sensors. In this paper, structural, electronic, and bonding properties of the neutral and anionic forms of glutathione tripeptide (GSH) complexes with a Au 3 cluster were studied using the DFT-B3LYP with 6-31+G**-LANL2DZ mixed basis set. Binding of glutathione with the gold cluster is governed by two different kinds of interactions: Auâ€"X (X = N, O, and S) anchoring bond and Au··•·•H-X nonconventional hydrogen bonding. The influence of the intramolecular hydrogen bonding of glutathione on the interaction of this peptide with the gold cluster has been... 

    Interactions of coinage metal clusters with histidine and their effects on histidine acidity; Theoretical investigation

    , Article Organic and Biomolecular Chemistry ; Volume 10, Issue 47 , Oct , 2012 , Pages 9373-9382 ; 14770520 (ISSN) Javan, M. J ; Jamshidi, Z ; Tehrani, Z. A ; Fattahi, A ; Sharif University of Technology
    2012
    Abstract
    Understanding the nature of interaction between metal nanoparticles and biomolecules such as amino acids is important in the development and design of biosensors. In this paper, binding of M3 clusters (M = Au, Ag and Cu) with neutral and anionic forms of histidine amino acid was studied using density functional theory (DFT-B3LYP). It was found that the interaction of histidine with M3 clusters is governed by two major bonding factors: (a) the anchoring N-M and O-M bonds and (b) the nonconventional N-H⋯M and O-H⋯M hydrogen bonds. The nature of these chemical bonds has been investigated based on quantum theory of atoms in molecules (QTAIM) and natural bond orbital (NBO) analyses. In the next... 

    Interaction of cations with 2′-deoxythymidine nucleoside and analysis of the nature and strength of cation bonds

    , Article Journal of Physical Organic Chemistry ; Volume 25, Issue 2 , JAN , 2012 , Pages 153-161 ; 08943230 (ISSN) Shakourian Fard, M ; Fattahi, A ; Jamshidi, Z ; Sharif University of Technology
    2012
    Abstract
    Binding of Mg 2+, Ca 2+, Zn 2+, and Cu + metal ions with 2′-deoxythymidine (dT) nucleoside was studied using a density functional theory method and a 6-311++G(d,p) basis set. This work demonstrated that the interaction of dT with these cations is tri-coordinated · (O2, O4′, O5′). Among the four types of cations, Zn 2+ cation exhibited the most tendency to interact with the dT. Cations via their interaction with dT can affect the N-glycosidic bond length, the values of pseudorotation of the sugar ring, the orientation of the base unit with respect to the sugar ring, and the acidity of the O5′H, O3′H, and N3H groups in the dT nucleoside. Natural bond orbital analysis was performed to calculate...