A facile and elegant methodology invoking the principles of Green Chemistry for the synthesis of porous tin dioxide nanospheres has been described. The low-temperature (∼50 °C) synthesis of SnO<sub>2</sub> nanoparticles and their self-assembly into organized, uniform, and monodispersed porous nanospheres with high surface area is facilitated by controlling the concentration of glucose, which acts as a stabilizing as well as structure-directing agent. A systematic control on the stannate to glucose molar concentration ratio determines the exact conditions to obtain monodispersed nanospheres, preferentially over random aggregation. Detailed characterization of the structure, morphology, and chemical composition reveals that the synthesized ma...
Single crystalline one-dimensional (1-D) SnO2 nanocrystals with controllable sizes, including the di...
Size-controllable tin oxide nanoparticles are prepared by heating ethylene glycol solutions containi...
Hierarchical porous tin dioxide has been successfully prepared through a fast one-pot template-free ...
Porous SnO2 nanoplatelets are successfully synthesized by calcinations of SnS2 nanoplatelets. Intere...
We report a simple and scalable strategy to synthesize mesoporous SnO2 with tin dioxide nanoparticle...
SnO 2 has been confirmed to be a potential sensor to many toxic volatile gases. We report here the s...
Advanced SnO2 nanostructured materials are of great interest for photocatalytic organic pollutants...
Single crystalline tin dioxide nanoribbons have been synthe-sized in bulk quantity by a mild solutio...
SnO2 nanoparticles are materials that have great potential in gas sensor devices. In this article, t...
International audienceNanostructures of SnO2 including nanoparticles, 1 nanowires, 2 nanobelts, 3 an...
We address the accessibility of tin oxide (SnO2) nanoparticles synthesized inside the pores of mesop...
The distinct electronic properties, including p-type semiconducting and a wide optical band gap, ren...
Tin dioxide (SnO2) nanoparticles were straightforwardly synthesized using an easily scaled-up liquid...
International audienceGas detection is of great interest for many different applications such as dom...
According to recent research, the use of nanoparticles as a gas-sensitive material increases the sel...
Single crystalline one-dimensional (1-D) SnO2 nanocrystals with controllable sizes, including the di...
Size-controllable tin oxide nanoparticles are prepared by heating ethylene glycol solutions containi...
Hierarchical porous tin dioxide has been successfully prepared through a fast one-pot template-free ...
Porous SnO2 nanoplatelets are successfully synthesized by calcinations of SnS2 nanoplatelets. Intere...
We report a simple and scalable strategy to synthesize mesoporous SnO2 with tin dioxide nanoparticle...
SnO 2 has been confirmed to be a potential sensor to many toxic volatile gases. We report here the s...
Advanced SnO2 nanostructured materials are of great interest for photocatalytic organic pollutants...
Single crystalline tin dioxide nanoribbons have been synthe-sized in bulk quantity by a mild solutio...
SnO2 nanoparticles are materials that have great potential in gas sensor devices. In this article, t...
International audienceNanostructures of SnO2 including nanoparticles, 1 nanowires, 2 nanobelts, 3 an...
We address the accessibility of tin oxide (SnO2) nanoparticles synthesized inside the pores of mesop...
The distinct electronic properties, including p-type semiconducting and a wide optical band gap, ren...
Tin dioxide (SnO2) nanoparticles were straightforwardly synthesized using an easily scaled-up liquid...
International audienceGas detection is of great interest for many different applications such as dom...
According to recent research, the use of nanoparticles as a gas-sensitive material increases the sel...
Single crystalline one-dimensional (1-D) SnO2 nanocrystals with controllable sizes, including the di...
Size-controllable tin oxide nanoparticles are prepared by heating ethylene glycol solutions containi...
Hierarchical porous tin dioxide has been successfully prepared through a fast one-pot template-free ...