This paper reports a versatile template-free method based on the hydrogen reduction of metallic salts for the synthesis of nanoporous Ni and alloys. The approach involves thermal decomposition and reduction of metallic precursors followed with metal cluster nucleation and ligament growth. Topological disordered porous architectures of metals with a controllable distribution of pore size and ligament size ranging from tens of nanometers to micrometers are synthesized. The reduction processes are scrutinized through X-ray diffraction, scanning electron microscopy, and transmission electron microscopy. The formation mechanism of the nanoporous metal is qualitatively explained. The as-prepared nanoporous Ni was tested as binder-free current col...
In this report, a nickel nanoscaled morphology was synthesized by two-step cathodic electrodepositio...
Nanoporous metals can be fabricated by dealloying, which is one of the reactions that occur during t...
Porous metals with a large surface-to-volume ratio, light weight, and excellent electrical/thermal c...
This paper reports a versatile template-free method based on the hydrogen reduction of metallic salt...
We report a new approach for the synthesis of three-dimensional nanoporous metals as binder-free cur...
This paper reports a versatile template-free method based on the hydrogen reduction of metallic salt...
Nanoporous nickel (np-Ni) was fabricated through dealloying of Ni-Al alloys and its application in l...
Nanoporous metals with considerable specific surface areas and hierarchical pore structures exhibit ...
AbstractMetallic nanoporous architecture can be spontaneously attained by dealloying of a binary all...
11th International Conference on Technology of Plasticity, ICTP 2014, 19-24 October 2014, Nagoya Con...
A scalable, room-temperature synthesis process named conversion reaction synthesis was developed tha...
Philosophiae Doctor - PhDThe development of finely dispersed powders and superfine-grained materials...
In order to enhance the cycle performance of active material, three-dimensional porous substrate suc...
Metal foams are utilized in various applications, such as in the automotive industries and electroch...
A variety of nanoporous transition metals, Fe, Co, Au, Cu, and others, have been readily formed by a...
In this report, a nickel nanoscaled morphology was synthesized by two-step cathodic electrodepositio...
Nanoporous metals can be fabricated by dealloying, which is one of the reactions that occur during t...
Porous metals with a large surface-to-volume ratio, light weight, and excellent electrical/thermal c...
This paper reports a versatile template-free method based on the hydrogen reduction of metallic salt...
We report a new approach for the synthesis of three-dimensional nanoporous metals as binder-free cur...
This paper reports a versatile template-free method based on the hydrogen reduction of metallic salt...
Nanoporous nickel (np-Ni) was fabricated through dealloying of Ni-Al alloys and its application in l...
Nanoporous metals with considerable specific surface areas and hierarchical pore structures exhibit ...
AbstractMetallic nanoporous architecture can be spontaneously attained by dealloying of a binary all...
11th International Conference on Technology of Plasticity, ICTP 2014, 19-24 October 2014, Nagoya Con...
A scalable, room-temperature synthesis process named conversion reaction synthesis was developed tha...
Philosophiae Doctor - PhDThe development of finely dispersed powders and superfine-grained materials...
In order to enhance the cycle performance of active material, three-dimensional porous substrate suc...
Metal foams are utilized in various applications, such as in the automotive industries and electroch...
A variety of nanoporous transition metals, Fe, Co, Au, Cu, and others, have been readily formed by a...
In this report, a nickel nanoscaled morphology was synthesized by two-step cathodic electrodepositio...
Nanoporous metals can be fabricated by dealloying, which is one of the reactions that occur during t...
Porous metals with a large surface-to-volume ratio, light weight, and excellent electrical/thermal c...