Synthesis spectral characterization and computational studies of organic single crystals for optoelectronic applications
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Abstract
In recent years, crystal growth has become the most curious for many
newlineresearchers, but growing quality crystals with required size is a more challenging
newlinetask. Many research groups are working in the area of crystal growth as crystals
newlineare widely used in variety of applications such as optoelectronics and biology
newlinerelated fields. Organic materials are explored for such applications rather than inorganic
newlinematerials due to the simple and rapid synthesis methodology followed
newlineusing simple low cost methods for the synthesis of organic materials, choice of
newlinedifferent number of precursors/ solvents available for organic materials and better
newlineperformance of these materials at application testing. For better performance at
newlineapplication level, perfect and transparent crystals are required. Earlier these
newlinecrystals were explored and tested for biological and medical applications due to
newlinetheir biocompatible nature. But later it was observed that their good optical and
newlineelectrical properties and conjugated structure, made them to exhibit nonlinear
newlineoptical (NLO) nature.
newlineBasically, NLO behaviour is a result of these conjugations which supports
newlineits applicability in photovoltaics, optical devices and optoelectronics.
newlinePolarizability, hyperpolarizability and band gap are the important properties of
newlineinterest which are required to choose them for suitable applications. To study
newlinethese properties and identify the various alternative materials, a thorough
newlineunderstanding of structure-property co relationship of any new compound with
newlinetheoretical with experimental support is required. To collect all detailed
newlineinformation DFT- B3LYP/6-311++G (d,p) method along with spectroscopic
newlineanalytical techniques are used.
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