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Titanium Carbide MXenes Discover the future of solar energy with this introduction to an essential new family of materials MXenes are a recently-discovered family of two-dimensional organic compounds formed from transition metal carbides. Their unique properties, such as high stability and electron conductivity, have made them a sought-after commodity with many industrial applications in cutting-edge industries. In particular, titanium carbide MXenes look poised to have significant applications in the solar energy industry, with potentially revolutionary consequences for the sustainable…mehr
Discover the future of solar energy with this introduction to an essential new family of materials
MXenes are a recently-discovered family of two-dimensional organic compounds formed from transition metal carbides. Their unique properties, such as high stability and electron conductivity, have made them a sought-after commodity with many industrial applications in cutting-edge industries. In particular, titanium carbide MXenes look poised to have significant applications in the solar energy industry, with potentially revolutionary consequences for the sustainable energy future.
Titanium Carbide MXenes offers a thorough and accessible introduction to this family of compounds and their possible applications. It begins by surveying the fundamentals of the MXene groups, before characterizing titanium carbide MXenes and their processes of synthesis. It then moves on to discuss applications, current and future. The result is a must-read for researchers and professionals looking to synthesize and construct these materials and apply them in sustainable industry.
Titanium Carbide MXenes readers will also find:
Detailed treatment of MXenes including nitrides composites, perovskites composites, and more
Discusses applications in photocatalytic CO2 reduction, hydrogen production, water splitting, and more
Roughly 100 figures illustrating key concepts
Titanium Carbide MXenes is a must-have for materials scientists, catalytic chemists, and scientists in industry.
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Autorenporträt
Muhammad Tahir, PhD, is Assistant Professor at the Department of Chemical and Petroleumn Engineering, College of Engineering, United Arab Emirates University (UAEU),United Arab Emirates (UAE). He has researched and published extensively on photocatalysis, functional materials design, and related subjects.
Inhaltsangabe
1 Introduction to Titanium carbide (Ti3C2) MXenes For Energy and Environmental Applications 2 Fundamentals, Properties, and Characteristics of Titanium Carbides MXenes (Ti3C2Tx) 3 Synthesis and Characterization of Titanium Carbide (Ti3C2) MXenes 4 Synthesis and characterization of TiC MXene based composites for energy storage and conversion 5 Titanium Carbide (TiC) MXene Based Titanium Dioxide Composites for Energy and Environment Applications 6 TiC MXene based graphitic carbon nitride composites for energy and environment applications 7 Titanium Carbide MXene based MOF Composites for Energy and Environment Applications 8 Titanium Carbide (TiC) MXene Based Layered Double Hydroxide (LDH) Composites for Energy and Environment Applications 9 Titanium Carbide MXene based Perovskites Composites for Energy and Environment Applications 10 Titanium Carbide (Ti3C2) Based MXenes for Energy Storage Applications
1 Introduction to Titanium carbide (Ti3C2) MXenes For Energy and Environmental Applications 2 Fundamentals, Properties, and Characteristics of Titanium Carbides MXenes (Ti3C2Tx) 3 Synthesis and Characterization of Titanium Carbide (Ti3C2) MXenes 4 Synthesis and characterization of TiC MXene based composites for energy storage and conversion 5 Titanium Carbide (TiC) MXene Based Titanium Dioxide Composites for Energy and Environment Applications 6 TiC MXene based graphitic carbon nitride composites for energy and environment applications 7 Titanium Carbide MXene based MOF Composites for Energy and Environment Applications 8 Titanium Carbide (TiC) MXene Based Layered Double Hydroxide (LDH) Composites for Energy and Environment Applications 9 Titanium Carbide MXene based Perovskites Composites for Energy and Environment Applications 10 Titanium Carbide (Ti3C2) Based MXenes for Energy Storage Applications
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