Saturday, February 28, 2015

ScienceDirect Search Alert: Graphene Research

ScienceDirect® Home
Search alert: Graphene Research
8 New articles available on ScienceDirect
Manage my alerts
Sensitive Electrochemical Sensor using a Graphene-Polyaniline Nanocomposite for Simultaneous Detection of Zn(II), Cd(II), and Pb(II)   Original Research Article
Analytica Chimica Acta, Available online 27 February 2015, Pages
Nipapan Ruecha, Nadnudda Rodthongkum, David M. Cate, John Volckens, Orawon Chailapakul, Charles S. Henry

Graphical abstract


High specific capacity retention of graphene/silicon nanosized sandwich structure fabricated by continuous electron beam evaporation as anode for lithium-ion batteries   Original Research Article
Electrochimica Acta, Available online 27 February 2015, Pages
Tatsuhiro Mori, Chih-Jung Chen, Tai-Feng Hung, Saad Gomaa Mohamed, Yi-Qiao Lin, Hong-Zheng Lin, James C. Sung, Shu-Fen Hu, Ru-Shi Liu
CuAu-ZnO-graphene nanocomposite: a novel graphene-based bimetallic alloy-semiconductor catalyst with its enhanced photocatalytic degradation performance   Original Research Article
Journal of Alloys and Compounds, Available online 27 February 2015, Pages
Hong Xie, Xiaoliang Ye, Kaiyue Duan, Muyin Xue, Yongling Du, Weichun Ye, Chunming Wang

Graphical abstract

In this work, we have successfully synthesized a novel graphene-based bimetallic alloy-semiconductor catalyst: CuAu-ZnO-Gr nanocomposite, and which behaved an enhanced photocatalytic activity.

Pulsed laser deposited Cr2O3 nanostructured thin film on graphene as anode material for lithium-ion batteries   Original Research Article
Journal of Alloys and Compounds, Available online 27 February 2015, Pages
S. Khamlich, Z.Y. Nuru, A. Bello, M. Fabiane, J.K. Dangbegnon, N. Manyala, M. Maaza

Graphical abstract

A different approach for the fabrication of an anode material system that comprises pulsed laser-deposited (PLD) Cr2O3 grown on few layer graphene (FLG) by chemical vapor deposition (CVD) was used. The electrochemical performance of Cr2O3 nanostructured thin film was improved by FLG, which make it a promising candidate for future lithium-ion batteries application.

Diffused sunlight driven highly synergistic pathway for complete mineralization of organic contaminants using reduced graphene oxide supported photocatalyst   Original Research Article
Journal of Hazardous Materials, Available online 27 February 2015, Pages
Sundaram Ganesh Babu, RamalingamVinoth, Bernaurdshaw Neppolian, Dionysios D. Dionysiou, Muthupandian Ashokkumar

Graphical abstract


Synthesis, structural and field emission properties of multiwall carbon nanotube-graphene-like nanocarbon hybrid films grown by microwave plasma enhanced chemical vapor deposition   Original Research Article
Materials Chemistry and Physics, Available online 27 February 2015, Pages
Sreekumar Chockalingam, Atul Bisht, O.S. Panwar, A.K. Kesarwani, B.P. Singh, Jagdish Chand, V.N. Singh

Graphical abstract


Graphene oxide stability   
Materials Today, Available online 27 February 2015, Pages
David Bradley
Graphene-toughened composites may benefit new aerospace structures   
Reinforced Plastics, Volume 59, Issue 1, January–February 2015, Pages 17

Access all 8 new results in ScienceDirect for : TITLE(graphene) and TITLE-ABSTR-KEY(graphene)
Manage my alerts

Access the ScienceDirect Info site if you have questions about this message or other features of this service.

This email has been sent to you by ScienceDirect, a division of Elsevier B.V., Radarweg 29, 1043 NX Amsterdam, The Netherlands, Tel.+31 20 485 3911.

ScienceDirect respects your privacy and does not disclose, rent or sell your personal information to any non-affiliated third parties without your consent, except as may be stated in the ScienceDirect online privacy policy.

By using email or alert services, you agree to comply with the ScienceDirect Terms and Conditions.

To unsubscribe to alert services, please go to the Alerts page.

Copyright © 2015 Elsevier B.V. except certain content provided by third parties. ScienceDirect ® is a registered trademark of Elsevier B.V.

Delivery Job ID: 2c624:776144443:1c623:636890415 Webuser ID: 4670106

No comments:

Post a Comment