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Part I. General Importance for the Synthesis and Crystal Growth of Nitrides
Significance of Ammonothermal Synthesis for Nitride Materials
The Potential of Nitride Materials
Technological Challenges of Autoclave Design for Ammonothermal Syntheses
Part II. Technical Solutions for In Situ Monitoring of Ammonothermal Processes
Innovative Techniques for Fast Growth and Fabrication of High Purity GaN Single Crystals
A New Perspective on Growth of GaN from the Basic Ammonothermal Regime
Ultrasound Measurement as a Tool for in Situ Determination of Filling Degree Under Extreme Conditions
Direct Determination of Viscosity of Supercritical Solutions
Determination of Solubility of GaN in Ammonobasic Systems
In Situ Visualization of the Ammonothermal Crystallization Process by X-ray Technology
Corrosive Degeneration of Process Equipment and Technical Solutions for Corrosion Protection Under Ammonothermal Conditions
Part III. Chemistry of Ammonothermal Synthesis
Explorative Synthesis of Novel Nitride Compounds by Ammonothermal Synthesis
Intermediates in Ammonothermal Synthesis and Crystal Growth
Equation of States and Ammonia Decomposition in Ammonothermal Systems
Molecular Simulations as Guides to Ammonothermal Syntheses of Nitrides
State of the Art and Perspectives
Properties of Ammonothermal Crystals
Special Equipment for Ammonothermal Processes
Ammonothermal Materials.

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