activity
20172021
most citedCompressive mechanical response of graphene foams and their thermal resistance with copper interfaces

14 citations · 25 across the 4 of their papers we have counts for

collaborators

5 papers

cond-mat.mtrl-sci20217 cited

Atomistic metrics of BaSO as an ultra-efficient radiative cooling material: a first-principles prediction

Zhen Tong, Joseph Peoples, Xiangyu Li +3

Radiative cooling has recently revived due to its significant potential as an environmentally friendly cooling technology. However, the design of particle-matrix cooling nanocompos…

physics.app-ph20202 cited

Remarkable Daytime Sub-ambient Radiative Cooling in BaSO4 Nanoparticle Films and Paints

Xiangyu Li, Joseph Peoples, Peiyan Yao +1

Radiative cooling is a passive cooling technology that offers great promises to reduce space cooling cost, combat the urban island effect and alleviate the global warming. To achie…

physics.app-ph20202 cited

Concentrated Radiative Cooling

Joseph Peoples, Yu-Wei Hung, Xiangyu Li +6

A fundamental limit of current radiative cooling systems is that only the top surface facing deep-space can provide the radiative cooling effect, while the bottom surface cannot. H…

physics.app-ph2020

Full Daytime Sub-ambient Radiative Cooling with High Figure of Merit in Commercial-like Paints

Xiangyu Li, Joseph Peoples, Zhifeng Huang +3

Radiative cooling is a passive cooling technology by reflecting sunlight and emitting radiation in the atmospheric sky window. Although highly desired, full daytime sub-ambient rad…

cond-mat.mtrl-sci201714 cited

Compressive mechanical response of graphene foams and their thermal resistance with copper interfaces

Wonjun Park, Xiangyu Li, Nirajan Mandal +2

We report compressive mechanical response of graphene foams (GFs) and the thermal resistance () between copper (Cu) and GFs, where GFs were prepared by the chemical vapor…