skip to main content
Resultados 1 2 3 4 5 next page
Mostrar Somente
Refinado por: assunto: Optics remover
Result Number Material Type Add to My Shelf Action Record Details and Options
1
Suppressing Förster Resonance Energy Transfer in Close‐Packed Quantum‐Dot Thin Film: Toward Efficient Quantum‐Dot Light‐Emitting Diodes with External Quantum Efficiency over 21.6
Material Type:
Artigo
Adicionar ao Meu Espaço

Suppressing Förster Resonance Energy Transfer in Close‐Packed Quantum‐Dot Thin Film: Toward Efficient Quantum‐Dot Light‐Emitting Diodes with External Quantum Efficiency over 21.6

Zhang, Heng ; Su, Qiang ; Chen, Shuming

Advanced optical materials, 2020-05, Vol.8 (10), p.n/a

Weinheim: Wiley Subscription Services, Inc

Texto completo disponível

2
Colloidal Quantum Dots: Synthesis, Composition, Structure, and Emerging Optoelectronic Applications
Material Type:
Artigo
Adicionar ao Meu Espaço

Colloidal Quantum Dots: Synthesis, Composition, Structure, and Emerging Optoelectronic Applications

Zhang, Jian ; Zhang, Shaohui ; Zhang, Yule ; Al‐Hartomy, Omar A. ; Wageh, Swelm ; Al‐Sehemi, Abdullah G. ; Hao, Yabin ; Gao, Lingfeng ; Wang, Hao ; Zhang, Han

Laser & photonics reviews, 2023-03, Vol.17 (3), p.n/a [Periódico revisado por pares]

Weinheim: Wiley Subscription Services, Inc

Texto completo disponível

3
Highly efficient emission and high-CRI warm white light-emitting diodes from ligand-modified CsPbBr3 quantum dots
Material Type:
Artigo
Adicionar ao Meu Espaço

Highly efficient emission and high-CRI warm white light-emitting diodes from ligand-modified CsPbBr3 quantum dots

Dongdong Yan ; Shuangyi Zhao ; Yubo Zhang ; Huaxin Wang ; Zhigang Zang

Opto-Electronic Advances, 2022, Vol.5 (1), p.35-48 [Periódico revisado por pares]

Key Laboratory of Optoelectronic Technology&Systems(Ministry of Education),Chongqing University,Chongqing 400044,China%Department of Physics,Southern University of Science and Technology,Shenzhen 518055,China

Texto completo disponível

4
Carbon quantum dots improving photovoltaic performance of CdS quantum dot-sensitized solar cells
Material Type:
Artigo
Adicionar ao Meu Espaço

Carbon quantum dots improving photovoltaic performance of CdS quantum dot-sensitized solar cells

Huang, Ping ; Xu, Shunjian ; Zhang, Meng ; Zhong, Wei ; Xiao, Zonghu ; Luo, Yongping

Optical materials, 2020-12, Vol.110, p.110535, Article 110535 [Periódico revisado por pares]

Elsevier B.V

Texto completo disponível

5
Vertical Coupling Effect on Gain Bandwidth of Chirped InAs/InP Quantum Dot Structures
Material Type:
Artigo
Adicionar ao Meu Espaço

Vertical Coupling Effect on Gain Bandwidth of Chirped InAs/InP Quantum Dot Structures

Chen, Gaowen ; Huang, Fujuan ; Zhang, Xiupu

IEEE journal of quantum electronics, 2024-04, Vol.60 (2), p.1-9 [Periódico revisado por pares]

New York: IEEE

Texto completo disponível

6
High‐Efficiency Green InP Quantum Dot‐Based Electroluminescent Device Comprising Thick‐Shell Quantum Dots
Material Type:
Artigo
Adicionar ao Meu Espaço

High‐Efficiency Green InP Quantum Dot‐Based Electroluminescent Device Comprising Thick‐Shell Quantum Dots

Zhang, Han ; Hu, Ning ; Zeng, Zaiping ; Lin, Qingli ; Zhang, Fengjuan ; Tang, Aiwei ; Jia, Yu ; Li, Lin Song ; Shen, Huaibin ; Teng, Feng ; Du, Zuliang

Advanced optical materials, 2019-04, Vol.7 (7), p.n/a

Weinheim: Wiley Subscription Services, Inc

Texto completo disponível

7
Engineering Core Size of InP Quantum Dot with Incipient ZnS for Blue Emission
Material Type:
Artigo
Adicionar ao Meu Espaço

Engineering Core Size of InP Quantum Dot with Incipient ZnS for Blue Emission

Suh, Yo‐Han ; Lee, Sanghyo ; Jung, Sung‐Min ; Bang, Sang Yun ; Yang, Jiajie ; Fan, Xiang‐Bing ; Zhan, Shijie ; Samarakoon, Chatura ; Jo, Jeong‐Wan ; Kim, Yoonwoo ; Choi, Hyung Woo ; Occhipinti, Luigi G. ; Lee, Tae Hoon ; Shin, Dong‐Wook ; Kim, Jong Min

Advanced optical materials, 2022-04, Vol.10 (7), p.n/a

Weinheim: Wiley Subscription Services, Inc

Texto completo disponível

8
Carboxylic‐Free Synthesis of InP Quantum Dots for Highly Efficient and Bright Electroluminescent Device
Material Type:
Artigo
Adicionar ao Meu Espaço

Carboxylic‐Free Synthesis of InP Quantum Dots for Highly Efficient and Bright Electroluminescent Device

Long, Rui ; Chen, Xueping ; Zhang, Xuhui ; Chen, Fei ; Wu, Zhenghui ; Shen, Huaibin ; Du, Zuliang

Advanced optical materials, 2023-03, Vol.11 (6), p.n/a

Weinheim: Wiley Subscription Services, Inc

Texto completo disponível

9
ZnO-Nanocarbon Core-Shell Type Hybrid Quantum Dots
Material Type:
Livro
Adicionar ao Meu Espaço

ZnO-Nanocarbon Core-Shell Type Hybrid Quantum Dots

Choi, Won Kook

Singapore: Springer Singapore Pte. Limited 2017

Sem texto completo

10
Na-doping CsPbBr3 quantum dots prepared via ion exchange for bright and stable blue-to-red photoluminescence
Material Type:
Artigo
Adicionar ao Meu Espaço

Na-doping CsPbBr3 quantum dots prepared via ion exchange for bright and stable blue-to-red photoluminescence

Shi, Wenbin ; Zhao, Yubin ; Xie, Cong ; Yang, Ping

Journal of luminescence, 2021-05, Vol.233, p.117886, Article 117886 [Periódico revisado por pares]

Elsevier B.V

Texto completo disponível

Resultados 1 2 3 4 5 next page

Personalize Seus Resultados

  1. Editar

Refine Search Results

Expandir Meus Resultados

  1.   

Mostrar Somente

  1. Recursos Online (8.978)
  2. Revistas revisadas por pares (5.560)

Refinar Meus Resultados

Tipo de Recurso 

  1. Artigos  (6.910)
  2. Anais de Congresso  (3.117)
  3. Newsletter Articles  (293)
  4. magazinearticle  (116)
  5. Reports  (105)
  6. Livros  (45)
  7. Book Chapters  (34)
  8. Dissertações  (21)
  9. Conjunto de Dados  (5)
  10. Resenhas  (1)
  11. Mais opções open sub menu

Data de Publicação 

De até
  1. Antes de1993  (13)
  2. 1993Até1999  (196)
  3. 2000Até2006  (1.298)
  4. 2007Até2014  (3.959)
  5. Após 2014  (5.285)
  6. Mais opções open sub menu

Idioma 

  1. Inglês  (10.623)
  2. Japonês  (709)
  3. Chinês  (80)
  4. Russo  (16)
  5. Alemão  (3)
  6. Português  (1)
  7. Galês  (1)
  8. Ucraniano  (1)
  9. Mais opções open sub menu

Buscando em bases de dados remotas. Favor aguardar.