PDF of ACS Nano 2021, 15, 362−376 10.1021/acsnano.0c06480 ABSTRACT: Silver nanowire (AgNW) networks show excellent optical, electrical, and mechanical properties, which make them ideal candidates for transparent electrodes in flexible and stretchable devices. Various coating strategies and testing setups have been developed to further improve their stretchability and to evaluate their performance. Still, a comprehensive microscopic understanding of the relationship between mechanical and electrical failure is missing. In this work, the fundamental deformation modes of five-fold twinned AgNWs in anisotropic networks are studied by large-scale SEM straining tests that are directly correlated with corresponding changes in the resistance. A pr...
This article focuses on the microscopic mechanism of thermally induced nanoweld formation between si...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
Revealing the atomic-scale deformation mechanisms of metallic nanowires (NWs) is important for their...
Silver nanowire (AgNW) networks show excellent optical, electrical, and mechanical properties, which...
Flexible transparent electrodes have to withstand large mechanical strains without sacrificing elect...
Organic (opto)electronics have undergone a rapid development in recent years. Applications are for i...
Tin doped Indium oxide currently is the dominant material used in the field of transparent electroni...
The tensile mechanical properties of silver nanowires produced by the polyol process and containing ...
Electrical stability and homogeneity of silver nanowire (AgNW) networks are critical assets for incr...
Ag nanowires have been manufactured with the ultrathin layer electrochemical deposition method. Tran...
ABSTRACT: Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to t...
Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to their limit...
ABSTRACT: Silver nanowires are promising components of flexible electronics such as interconnects an...
Silver nanowire networks have recently been a heavily researched subject due to their potential use ...
This article focuses on the microscopic mechanism of thermally induced nanoweld formation between si...
This article focuses on the microscopic mechanism of thermally induced nanoweld formation between si...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
Revealing the atomic-scale deformation mechanisms of metallic nanowires (NWs) is important for their...
Silver nanowire (AgNW) networks show excellent optical, electrical, and mechanical properties, which...
Flexible transparent electrodes have to withstand large mechanical strains without sacrificing elect...
Organic (opto)electronics have undergone a rapid development in recent years. Applications are for i...
Tin doped Indium oxide currently is the dominant material used in the field of transparent electroni...
The tensile mechanical properties of silver nanowires produced by the polyol process and containing ...
Electrical stability and homogeneity of silver nanowire (AgNW) networks are critical assets for incr...
Ag nanowires have been manufactured with the ultrathin layer electrochemical deposition method. Tran...
ABSTRACT: Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to t...
Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to their limit...
ABSTRACT: Silver nanowires are promising components of flexible electronics such as interconnects an...
Silver nanowire networks have recently been a heavily researched subject due to their potential use ...
This article focuses on the microscopic mechanism of thermally induced nanoweld formation between si...
This article focuses on the microscopic mechanism of thermally induced nanoweld formation between si...
International audienceSilver nanowire (AgNW) networks are among the most promising indium-free, flex...
Revealing the atomic-scale deformation mechanisms of metallic nanowires (NWs) is important for their...