While solid-state materials are commonly classified as covalent, ionic, or metallic, there are cases that defy these iconic bonding mechanisms. Phasechange materials (PCMs) for data storage are a prominent example: they have been claimed to show “resonant bonding,” but a clear definition of this mechanism has been lacking. Here, it is shown that these solids are fundamentally different from resonant bonding in the π-orbital systems of benzene and graphene, based on first-principles data for vibrational, optical, and polarizability properties. It is shown that PCMs and related materials exhibit a unique mechanism between covalent and metallic bonding. It is suggested that these materials be called “incipient metals,” and their bonding nature...
A unified picture of different application areas for incipient metals is presented. This unconventio...
It has been a long-time dream of mankind to design materials with tailored properties. In recent yea...
A 2D map is created for solid-state materials based on a quantum-mechanical description of electron ...
peer reviewedAbstract While solid-state materials are commonly classified as covalent, ionic, or met...
While solid-state materials are commonly classified as covalent, ionic, or metallic, there are cases...
Scientists and practitioners have long dreamt of designing materials with novel properties. Yet, a h...
Scientists and practitioners have long dreamt of designing materials with novel properties. Yet, a h...
Scientists and practitioners have long dreamt of designing materials with novel properties. Yet, a h...
editorial reviewedMany of the most extraordinary properties of phase change materials (PCMs) can be ...
Phase Change Materials are emerging as active components of non-volatile memories thanks to their ab...
Scientists and practitioners have long dreamt of designing materials with novel properties. Yet, a h...
Scientists and practitioners have long dreamt of designing materials with novel properties. Yet, a h...
A unified picture of different application areas for incipient metals is presented. This unconventio...
A unified picture of different application areas for incipient metals is presented. This unconventio...
Materials with rationally controlled properties play important parts in the development of new and a...
A unified picture of different application areas for incipient metals is presented. This unconventio...
It has been a long-time dream of mankind to design materials with tailored properties. In recent yea...
A 2D map is created for solid-state materials based on a quantum-mechanical description of electron ...
peer reviewedAbstract While solid-state materials are commonly classified as covalent, ionic, or met...
While solid-state materials are commonly classified as covalent, ionic, or metallic, there are cases...
Scientists and practitioners have long dreamt of designing materials with novel properties. Yet, a h...
Scientists and practitioners have long dreamt of designing materials with novel properties. Yet, a h...
Scientists and practitioners have long dreamt of designing materials with novel properties. Yet, a h...
editorial reviewedMany of the most extraordinary properties of phase change materials (PCMs) can be ...
Phase Change Materials are emerging as active components of non-volatile memories thanks to their ab...
Scientists and practitioners have long dreamt of designing materials with novel properties. Yet, a h...
Scientists and practitioners have long dreamt of designing materials with novel properties. Yet, a h...
A unified picture of different application areas for incipient metals is presented. This unconventio...
A unified picture of different application areas for incipient metals is presented. This unconventio...
Materials with rationally controlled properties play important parts in the development of new and a...
A unified picture of different application areas for incipient metals is presented. This unconventio...
It has been a long-time dream of mankind to design materials with tailored properties. In recent yea...
A 2D map is created for solid-state materials based on a quantum-mechanical description of electron ...