TY - JOUR
T1 - Specific ion effects directed noble metal aerogels
T2 - Versatile manipulation for electrocatalysis and beyond
AU - Du, Ran
AU - Hu, Yue
AU - Hübner, René
AU - Joswig, Jan Ole
AU - Fan, Xuelin
AU - Schneider, Kristian
AU - Eychmüller, Alexander
N1 - Publisher Copyright:
© 2019 by the Authors.
PY - 2019
Y1 - 2019
N2 - Noble metal foams (NMFs) are a new class of functional materials featuring properties of both noble metals and monolithic porous materials, providing impressive prospects in diverse fields. Among reported synthetic methods, the sol-gel approach manifests overwhelming advantages for versatile synthesis of nanostructured NMFs (i.e., noble metal aerogels) under mild conditions. However, limited gelation methods and elusive formation mechanisms retard structure/composition manipulation, hampering on-demand design for practical applications. Here, highly tunable NMFs are fabricated by activating specific ion effects, enabling various single/alloy aerogels with adjustable composition (Au, Ag, Pd, and Pt), ligament sizes (3.1 to 142.0 nm), and special morphologies. Their superior performance in programmable self-propulsion devices and electrocatalytic alcohol oxidation is also demonstrated. This study provides a conceptually new approach to fabricate and manipulate NMFs and an overall framework for understanding the gelation mechanism, paving the way for on-target design of NMFs and investigating structureperformance relationships for versatile applications.
AB - Noble metal foams (NMFs) are a new class of functional materials featuring properties of both noble metals and monolithic porous materials, providing impressive prospects in diverse fields. Among reported synthetic methods, the sol-gel approach manifests overwhelming advantages for versatile synthesis of nanostructured NMFs (i.e., noble metal aerogels) under mild conditions. However, limited gelation methods and elusive formation mechanisms retard structure/composition manipulation, hampering on-demand design for practical applications. Here, highly tunable NMFs are fabricated by activating specific ion effects, enabling various single/alloy aerogels with adjustable composition (Au, Ag, Pd, and Pt), ligament sizes (3.1 to 142.0 nm), and special morphologies. Their superior performance in programmable self-propulsion devices and electrocatalytic alcohol oxidation is also demonstrated. This study provides a conceptually new approach to fabricate and manipulate NMFs and an overall framework for understanding the gelation mechanism, paving the way for on-target design of NMFs and investigating structureperformance relationships for versatile applications.
UR - http://www.scopus.com/inward/record.url?scp=85066323360&partnerID=8YFLogxK
U2 - 10.1126/sciadv.aaw4590
DO - 10.1126/sciadv.aaw4590
M3 - Article
C2 - 31139750
AN - SCOPUS:85066323360
SN - 2375-2548
VL - 5
JO - Science advances
JF - Science advances
IS - 5
M1 - aaw4590
ER -