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This book explores the potential of vanillic acid, a naturally derived phenolic compound, as a versatile and sustainable core for the design of liquid crystalline materials. By leveraging its reactive hydroxyl, methoxy, and carboxylic groups, vanillic acid can be chemically modified to yield mesogens with tunable polarity, conjugation, and thermal behavior. The book discusses the principles of mesomorphism, molecular design strategies, and the role of polar groups and alkoxy chains in phase stabilization. It also covers synthetic methodologies, structural analysis, and characterization…mehr

Produktbeschreibung
This book explores the potential of vanillic acid, a naturally derived phenolic compound, as a versatile and sustainable core for the design of liquid crystalline materials. By leveraging its reactive hydroxyl, methoxy, and carboxylic groups, vanillic acid can be chemically modified to yield mesogens with tunable polarity, conjugation, and thermal behavior. The book discusses the principles of mesomorphism, molecular design strategies, and the role of polar groups and alkoxy chains in phase stabilization. It also covers synthetic methodologies, structural analysis, and characterization techniques. Vanillic acid emerges as a key bio-based building block for developing high-performance, eco-friendly liquid crystal systems.
Autorenporträt
Ami Patel is a research scholar in Organic and Analytical Chemistry with a keen interest in synthesis, characterization, and molecular design. She shares her academic journey to inspire curiosity and deeper understanding in chemical research and is passionate about bridging complex science with clear insight.