Micro/nano functional devices fabricated by additive manufacturing
Micro/nano functional devices featuring deep integration, intelligence, and miniaturization
have attracted considerable attention in frontier areas of research, such as micro/nano …
have attracted considerable attention in frontier areas of research, such as micro/nano …
Controlling mass and energy diffusion with metamaterials
Diffusion driven by temperature or concentration gradients is a fundamental mechanism of
energy and mass transport that inherently differs from wave propagation in both physical …
energy and mass transport that inherently differs from wave propagation in both physical …
Excellent low‐frequency microwave absorption and high thermal conductivity in polydimethylsiloxane composites endowed by hydrangea‐like CoNi@ BN …
The advancement of thin, lightweight, and high‐power electronic devices has increasingly
exacerbated issues related to electromagnetic interference and heat accumulation. To …
exacerbated issues related to electromagnetic interference and heat accumulation. To …
The design, manufacture and application of multistable mechanical metamaterials-a state-of-the-art review
Multistable mechanical metamaterials are a type of mechanical metamaterials with special
features, such as reusability, energy storage and absorption capabilities, rapid deformation …
features, such as reusability, energy storage and absorption capabilities, rapid deformation …
Robustly printable freeform thermal metamaterials
Thermal metamaterials have exhibited great potential on manipulating, controlling and
processing the flow of heat, and enabled many promising thermal metadevices, including …
processing the flow of heat, and enabled many promising thermal metadevices, including …
Diffusive Fizeau drag in spatiotemporal thermal metamaterials
Fizeau drag means that the speed of light can be regulated by the flow of water, owing to the
momentum interaction between photons and moving media. However, the dragging of heat …
momentum interaction between photons and moving media. However, the dragging of heat …
Tunable liquid–solid hybrid thermal metamaterials with a topology transition
Thermal metamaterials provide rich control of heat transport which is becoming the
foundation of cutting-edge applications ranging from chip cooling to biomedical. However …
foundation of cutting-edge applications ranging from chip cooling to biomedical. However …
Convective Thermal Metamaterials: Exploring High‐Efficiency, Directional, and Wave‐Like Heat Transfer
Convective thermal metamaterials are artificial structures where convection dominates in the
thermal process. Due to the field coupling between velocity and temperature, convection …
thermal process. Due to the field coupling between velocity and temperature, convection …
Non-Hermitian chiral heat transport
Exceptional point (EP) has been captivated as a concept of interpreting eigenvalue
degeneracy and eigenstate exchange in non-Hermitian physics. The chirality in the vicinity …
degeneracy and eigenstate exchange in non-Hermitian physics. The chirality in the vicinity …
Thermal Willis coupling in spatiotemporal diffusive metamaterials
Willis coupling generically stems from bianisotropy or chirality in wave systems.
Nevertheless, those schemes are naturally unavailable in diffusion systems described by a …
Nevertheless, those schemes are naturally unavailable in diffusion systems described by a …