TY - JOUR
T1 - Graphene meta-aerogels
T2 - When sculpture aesthetic meets 1D/2D composite materials
AU - Zhang, Miao
AU - Yuan, Jiayin
N1 - Publisher Copyright:
© The Author(s) 2022. Published by Tsinghua University Press.
PY - 2022/12
Y1 - 2022/12
N2 - The engraving technique has grown in parallel with our human civilization, along with the targeted materials evolving from stone and metals to wood. Benefiting from the blossom of nanotechnology, the bulky nicking tools have downsized themselves to a micro-/nanoscale, such as laser beams, and the materials have been extended from traditional hard ones to soft functional nanomaterials. When ancient sculpture art meets modern advanced micro-/nano fabrication techniques and low-dimensional materials, impossible materials are born, which will redefine the functional scope of well-developed materials. Recently, a team from Tsinghua University reported such fascinating materials, graphene-based meta-aerogels, that process excellent elasticity, ultralight specific weight (down to 0.1 mg·cm−3), and superwide Poisson's ratio range (−0.95 < vpeak < 1.64) via facile and fast laser-engraving technique.
AB - The engraving technique has grown in parallel with our human civilization, along with the targeted materials evolving from stone and metals to wood. Benefiting from the blossom of nanotechnology, the bulky nicking tools have downsized themselves to a micro-/nanoscale, such as laser beams, and the materials have been extended from traditional hard ones to soft functional nanomaterials. When ancient sculpture art meets modern advanced micro-/nano fabrication techniques and low-dimensional materials, impossible materials are born, which will redefine the functional scope of well-developed materials. Recently, a team from Tsinghua University reported such fascinating materials, graphene-based meta-aerogels, that process excellent elasticity, ultralight specific weight (down to 0.1 mg·cm−3), and superwide Poisson's ratio range (−0.95 < vpeak < 1.64) via facile and fast laser-engraving technique.
KW - aerogel
KW - compressible
KW - graphene
KW - laser engraving
UR - https://www.scopus.com/pages/publications/85145504983
U2 - 10.26599/NRE.2022.9120035
DO - 10.26599/NRE.2022.9120035
M3 - 文章
AN - SCOPUS:85145504983
SN - 2791-0091
VL - 1
JO - Nano Research Energy
JF - Nano Research Energy
IS - 3
M1 - e9120035
ER -