The role of crystal structure in semiconductors and the application of X-ray diffraction analysis.
With the advancement of technology and the development of advanced processes, electronic products are becoming smaller and smaller, and the size of semiconductor components is approaching the physical limits of materials. In order to meet the demands of next-generation electronic products, such as small size, multifunctionality, fast instruction cycles, and low power consumption, while avoiding the physical limits of component size, surpassing Moore's Law has become the current research goal of the semiconductor industry.
Observation of Nano-Dual-Crystal Copper
Nano-twinned copper refers to the microstructure of copper exhibiting a single-direction columnar crystal in the (111) orientation, with a high density of copper twin stacking within the columnar grains, and the spacing between twin boundaries ranges from several nanometers to hundreds of nanometers.