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2D Interwoven Metal-Organic Framework in Tetrachloromercurate(II) based Hybrid Material

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1TitleTitle of Document2D Interwoven Metal-Organic Framework in Tetrachloromercurate(II) based Hybrid Material
2CreatorAuthor's name, affiliation, country MUKESH KUMAR1, SANJAY K. VERMA1, BIKRAM SINGH2, ATUL THAKUR2, AJIT KUMAR1 and DINESH JASROTIA1*
1Department of Physics, Govt. G. M. Science College, Jammu (J & K)-180016, India
2School of Physics & Materials Science, Shoolini University, Solan (H.P)-173212, India
3SubjectDicipline(s) Chemical Science
3SubjectKeywords Hybrid materials, N-H...Cl hydrogen bonding, 2D Interwoven pattern
4DescriptionAbstract The secondary interactions bonded crystal structure of p-phenylenediammonium tetrachloromercurate(II) has been studied by X-ray diffraction techniques and hyper-Raman Tensor studies. The tetrahedra hybrid structure exhibit two dimensional interwoven inorganic-organic layers mingle through N-H...Cl hydrogen bonding interactions. Organic layers are squash-in between Cl...Cl halogen bonded inorganic layers in p-phenylenediammonium tetrachloromercurate(II) with Cl...Cl distance = 3.628(3) Å and Hg-Cl...Cl=157.8(9)o. H2A atom is shared by two chlorine atoms [Cl1 and Cl3] and thus acts as bifurcated hydrogen atom with bifurcated hydrogen bond angle of 93.98(6) o. The antiparallel zig-zag bilayer inorganic-organic pattern present the p-phenylenediammonium tetrachloromercurate(II) into two-dimensional pattern along the ac-plane. The nearest centroid-centroid distance [3.86(4) Å] depicts that the contact is outlying to have any π... π interactions and the nearest hydrogen to centroid distance [2.82(3) Å] contributes to stability of crystal structure through C-H... π interactions. The initial Hyper-Raman tensors were calculated through polarization selection rules by using crystallographic Wyckoff positions.
5PublishersOrganizing agency, location WWW Publications, India
6Contributor Sponsor(s) -
7DateDate (YYYY-MM-DD) -
8TypeStatus & genre Peer-reviewed Article
8TypeType
9FormateFile Formate PDF
10IdentifierUniform Resource Identifier Click Here
10IdentifierDigital Object Identifier
11SourceJournal/conference title; vol., no. (Year)Chemical Science Transactions, Volume  4 , Number  (2), (2015)
12LanuguageEnglish=en en
13RelationSupp.files
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