skip to main content
Mostrar Somente
Refinado por: autor: Zeng, Wen remover Base de dados/Biblioteca: ScienceDirect remover
Result Number Material Type Add to My Shelf Action Record Details and Options
1
Gas-sensing performance enhancement in ZnO nanostructures by hierarchical morphology
Material Type:
Artigo
Adicionar ao Meu Espaço

Gas-sensing performance enhancement in ZnO nanostructures by hierarchical morphology

Guo, Weiwei ; Liu, Tianmo ; Zhang, Hejing ; Sun, Rong ; Chen, Yong ; Zeng, Wen ; Wang, Zhongchang

Sensors and actuators. B, Chemical, 2012-05, Vol.166-167, p.492-499 [Periódico revisado por pares]

Elsevier B.V

Texto completo disponível

2
Development and application of digital twin technology for integrated regional energy systems in smart cities
Material Type:
Artigo
Adicionar ao Meu Espaço

Development and application of digital twin technology for integrated regional energy systems in smart cities

Huang, Wenhua ; Zhang, Yajuan ; Zeng, Wen

Sustainable computing informatics and systems, 2022-12, Vol.36, p.100781, Article 100781

Elsevier Inc

Texto completo disponível

3
Assembly of 2D nanosheets into 3D flower-like NiO: Synthesis and the influence of petal thickness on gas-sensing properties
Material Type:
Artigo
Adicionar ao Meu Espaço

Assembly of 2D nanosheets into 3D flower-like NiO: Synthesis and the influence of petal thickness on gas-sensing properties

Wang, Jing ; Zeng, Wen ; Wang, Zhongchang

Ceramics international, 2016-02, Vol.42 (3), p.4567-4573 [Periódico revisado por pares]

Elsevier Ltd

Texto completo disponível

4
Hydrothermal synthesis of assembled WO3.H2O nanoflowers with enhanced gas sensing performance
Material Type:
Artigo
Adicionar ao Meu Espaço

Hydrothermal synthesis of assembled WO3.H2O nanoflowers with enhanced gas sensing performance

Yu, Yangchun ; Zeng, Wen ; Zhang, He

Materials letters, 2016-05, Vol.171, p.162-165 [Periódico revisado por pares]

Texto completo disponível

5
Effects of different petal thickness on gas sensing properties of flower-like WO3.H2O hierarchical architectures
Material Type:
Artigo
Adicionar ao Meu Espaço

Effects of different petal thickness on gas sensing properties of flower-like WO3.H2O hierarchical architectures

Zeng, Wen ; Zhang, He ; Wang, Zhongchang

Applied surface science, 2015-08, Vol.347, p.73-78 [Periódico revisado por pares]

Texto completo disponível

6
Hydrothermal synthesis of novel NiO nanoflowers assisted with CTAB and SDS respectively and their gas-sensing properties
Material Type:
Artigo
Adicionar ao Meu Espaço

Hydrothermal synthesis of novel NiO nanoflowers assisted with CTAB and SDS respectively and their gas-sensing properties

Miao, Ruiyang ; Zeng, Wen ; Gao, Qi

Materials letters, 2017-01, Vol.186, p.175-177 [Periódico revisado por pares]

Amsterdam: Elsevier B.V

Texto completo disponível

7
Hydrothermal synthesis of flake-flower NiO architectures: Structure, growth and gas-sensing properties
Material Type:
Artigo
Adicionar ao Meu Espaço

Hydrothermal synthesis of flake-flower NiO architectures: Structure, growth and gas-sensing properties

Miao, Ruiyang ; Zeng, Wen

Materials letters, 2016-05, Vol.171, p.200-203 [Periódico revisado por pares]

Elsevier B.V

Texto completo disponível

8
Novel NiO flower-like microspheres with abundant nanoparticles adhering to the petals: Hydrothermal synthesis and their gas sensing properties
Material Type:
Artigo
Adicionar ao Meu Espaço

Novel NiO flower-like microspheres with abundant nanoparticles adhering to the petals: Hydrothermal synthesis and their gas sensing properties

Miao, Ruiyang ; Yu, Xiang ; Zeng, Wen

Materials letters, 2016-06, Vol.173, p.107-110 [Periódico revisado por pares]

Elsevier B.V

Texto completo disponível

9
Gas-sensing property improvement of ZnO by hierarchical flower-like architectures
Material Type:
Artigo
Adicionar ao Meu Espaço

Gas-sensing property improvement of ZnO by hierarchical flower-like architectures

Guo, Weiwei ; Liu, Tianmo ; Zeng, Wen ; Liu, Dejun ; Chen, Yong ; Wang, Zhongchang

Materials letters, 2011-12, Vol.65 (23), p.3384-3387 [Periódico revisado por pares]

Elsevier B.V

Texto completo disponível

10
Hydrothermal synthesis of novel flower-needle NiO architectures: Structure, growth and gas response
Material Type:
Artigo
Adicionar ao Meu Espaço

Hydrothermal synthesis of novel flower-needle NiO architectures: Structure, growth and gas response

Cao, Shengkai ; Zeng, Wen ; Long, Huiwu ; Zhang, He

Materials letters, 2015-11, Vol.159, p.385-388 [Periódico revisado por pares]

Elsevier B.V

Texto completo disponível

Personalize Seus Resultados

  1. Editar

Refine Search Results

Expandir Meus Resultados

  1.   

Mostrar Somente

  1. Revistas revisadas por pares (12)

Buscando em bases de dados remotas. Favor aguardar.