原子半径
粘结长度
凝聚态物理
带隙
放松(心理学)
键能
声子
拉曼光谱
材料科学
粘结强度
密度泛函理论
半径
化学物理
化学
物理
纳米技术
计算化学
光学
结晶学
分子
晶体结构
有机化学
胶粘剂
心理学
社会心理学
图层(电子)
计算机安全
计算机科学
作者
Yonghui Liu,Chen Shao,Wei Yu,Qingzhong Gui,John Robertson,Yuzheng Guo
摘要
Understanding the physical mechanism behind atomic-size dependence of the bandgap, phonon frequency, and mechanical strength in various monolayered MA2Z4 is of crucial importance for their electronic and photoelectronic applications. The density functional theory calculation results confirm that these physical quantities gradually decrease with the increasing periodicity of the atomic size (or radius) of the A or Z of MA2Z4. In order to clarify the common origin of the atomic-size dependence of these quantities, we establish these quantities as functions of bond length and bond energy by developing a bond relaxation theory approach. Theoretical reproduction of periodic trends confirms that bond expansion and energy weakening dominate their atomic-size dependence. The proposed approach is not only helpful to understand the physical origins of atomic-size dependence in different MA2Z4 monolayers but also can be extended to study the periodic trends of the related physical properties in other systems.
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