Abstract

Chalcogenide glasses or amorphous semiconductors are the attractive materials for optoelectronics investigations. Surface morphology and crystallization kinetics parameters are play an important role to define their possible uses. In such materials a metal containing multicomponent alloy offers fractured surface morphology. Therefore, this work deals the fractured surface morphologies and crystallization kinetics of Se93−xZn2Te 5Inx (0 ≤ x ≤ 10) multicomponent chalcogenide alloys. These materials have been exhibited the glass transition

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