Investigations on 2-(4-Cyanophenylamino) acetic acid by FT-IR,FT-Raman, NMR and UV-Vis spectroscopy, DFT (NBO, HOMO-LUMO, MEP and Fukui function) and molecular docking studies
Extensive quantum chemical calculation have been carried out to investigate the Fourier Transform Infrared(FT-IR), Fourier Transform Raman(FT-RAMAN) and Nuclear magnetic resonance(NMR), and Ultra Violet-Visible(UV-vis) spectra of 2-(4-Cyanophenylamino) acetic acid. The molecular structure, fundament...
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description | Extensive quantum chemical calculation have been carried out to investigate the Fourier Transform Infrared(FT-IR), Fourier Transform Raman(FT-RAMAN) and Nuclear magnetic resonance(NMR), and Ultra Violet-Visible(UV-vis) spectra of 2-(4-Cyanophenylamino) acetic acid. The molecular structure, fundamental vibrational frequencies and intensities of the vibrational bands were interpreted with the aid of optimizations and normal coordinate force field calculations based on density functional theory (DFT) and ab initio HF methods with 6–311++G(d,p) basis set. The theoretical vibrational wavenumbers are compared with the experimental values. The calculated HOMO-LUMO energies were found to be-6.2056 eV and -1.2901 eV which indicates the charge transfer within the molecule. Natural bond orbital analysis has been carried out to explain the charge transfer (or) delocalization of charge due to the intra molecular interactions. Molecular Electrostatic Potential (MEP), First order hyperpolarizability, and Fukui functions calculation were also performed. The thermodynamic properties of the title compound were studied for different temperatures. Molecular docking studies were made on the title compound to study the hydrogen bond interactions and the minimum binding energy was calculated.
Analytical chemistry, Organic chemistry, Theoretical chemistry, DFT; NBO; MEP; TD-DFT; Docking. |
doi_str_mv | 10.1016/j.heliyon.2020.e04976 |
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Analytical chemistry, Organic chemistry, Theoretical chemistry, DFT; NBO; MEP; TD-DFT; Docking.</description><subject>Analytical chemistry</subject><subject>DFT</subject><subject>Docking</subject><subject>MEP</subject><subject>Multidisciplinary Sciences</subject><subject>NBO</subject><subject>Organic chemistry</subject><subject>Science & Technology</subject><subject>Science & Technology - Other Topics</subject><subject>TD-DFT</subject><subject>Theoretical chemistry</subject><issn>2405-8440</issn><issn>2405-8440</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2020</creationdate><recordtype>article</recordtype><sourceid>AOWDO</sourceid><sourceid>DOA</sourceid><recordid>eNqNUttuEzEQXSEQrUo_AcmPqcgGe23v5QUEoaGRkgZFSV8trz2bOt3YYb0blK_iF3EuqugTvHhG43POjGZOFL0neEAwST-uB49Qm72zgwQneACYFVn6KrpMGOZxzhh-_Vd-EV17v8YYE56nRUbfRheUYsyzgl5Gv8d2B741K9kaZz1yFiVxj8XDvbRu-wh2X8uNse4GSQWtUSEYjco9Gi3i8bwf3rncSNtH99M5klaj5UP8YDzyW1Bt47xy230ffRstUO_-66yP7mbTWTxZTkM6vf1xZIy6p86gqrPqMMLNsbZxNaiulg3STj0Zu0K-7bQB_y56U8naw_U5XkXL0e1ieBdPZt_Hwy-TWHGC2zhJKa8gwVhBWmnQWgIjOEm5ZoAzjlnKq4pXVJIyBwq6kElC0wJrrilTitCraHzS1U6uxbYxG9nshZNGHAuuWQnZhH3UIEoJpCgY4xJTRiXLs7wsMwlpyYCneRG0Pp20tl25Aa3Ato2sX4i-_LHmUazcTmSckIylQaB3Fmjczy6cS2yMV1DX0oLrvEgYy8O1WYIDlJ-gKizfN1A9tyFYHLwj1uLsHXHwjjh5J_A-nHi_oHSVVwasgmcuPtqF0DQkCaUBnf8_emjao7mGrrNtoH4-USFcb2egEWe6Nk2wTFiv-ceofwAmm-4a</recordid><startdate>20200901</startdate><enddate>20200901</enddate><creator>Rahuman, M. 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Habib</creatorcontrib><creatorcontrib>Muthu, S.</creatorcontrib><creatorcontrib>Raajaraman, B.R.</creatorcontrib><creatorcontrib>Raja, M.</creatorcontrib><creatorcontrib>Umamahesvari, H.</creatorcontrib><collection>ScienceDirect Open Access Titles</collection><collection>Elsevier:ScienceDirect:Open Access</collection><collection>Web of Science - Science Citation Index Expanded - 2020</collection><collection>Web of Science Core Collection</collection><collection>Science Citation Index Expanded</collection><collection>CrossRef</collection><collection>MEDLINE - Academic</collection><collection>PubMed Central (Full Participant titles)</collection><collection>DOAJ Directory of Open Access Journals</collection><jtitle>Heliyon</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Rahuman, M. Habib</au><au>Muthu, S.</au><au>Raajaraman, B.R.</au><au>Raja, M.</au><au>Umamahesvari, H.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Investigations on 2-(4-Cyanophenylamino) acetic acid by FT-IR,FT-Raman, NMR and UV-Vis spectroscopy, DFT (NBO, HOMO-LUMO, MEP and Fukui function) and molecular docking studies</atitle><jtitle>Heliyon</jtitle><stitle>HELIYON</stitle><date>2020-09-01</date><risdate>2020</risdate><volume>6</volume><issue>9</issue><spage>e04976</spage><epage>e04976</epage><pages>e04976-e04976</pages><artnum>e04976</artnum><artnum>04976</artnum><issn>2405-8440</issn><eissn>2405-8440</eissn><abstract>Extensive quantum chemical calculation have been carried out to investigate the Fourier Transform Infrared(FT-IR), Fourier Transform Raman(FT-RAMAN) and Nuclear magnetic resonance(NMR), and Ultra Violet-Visible(UV-vis) spectra of 2-(4-Cyanophenylamino) acetic acid. The molecular structure, fundamental vibrational frequencies and intensities of the vibrational bands were interpreted with the aid of optimizations and normal coordinate force field calculations based on density functional theory (DFT) and ab initio HF methods with 6–311++G(d,p) basis set. The theoretical vibrational wavenumbers are compared with the experimental values. The calculated HOMO-LUMO energies were found to be-6.2056 eV and -1.2901 eV which indicates the charge transfer within the molecule. Natural bond orbital analysis has been carried out to explain the charge transfer (or) delocalization of charge due to the intra molecular interactions. Molecular Electrostatic Potential (MEP), First order hyperpolarizability, and Fukui functions calculation were also performed. The thermodynamic properties of the title compound were studied for different temperatures. Molecular docking studies were made on the title compound to study the hydrogen bond interactions and the minimum binding energy was calculated.
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subjects | Analytical chemistry DFT Docking MEP Multidisciplinary Sciences NBO Organic chemistry Science & Technology Science & Technology - Other Topics TD-DFT Theoretical chemistry |
title | Investigations on 2-(4-Cyanophenylamino) acetic acid by FT-IR,FT-Raman, NMR and UV-Vis spectroscopy, DFT (NBO, HOMO-LUMO, MEP and Fukui function) and molecular docking studies |
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