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Chemicals, plastics and rubber industries

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Ni(sub x)Pb(sub(1-x)) nanowire arrays: Effects of annealing

Article Abstract:

The Ni (sub x)Pb(sub1-x) nanowires arrays were successfully fabricated by AC electrodeposition within the nanospores of ordered porous alumina films prepared by a two-step anodization. The Ni(sub x)Pb(sub 1-x)nanoarrays, which were obtained, possess magnetic anisotropy, and the perpendicular coercivity was lower than that of pure Ni nanowires before and after annealing.

Author: Benxi Gu, Guangbin Ji, Jieming Cao, Fang Zhang, Guoyue Xu, Hallin Su, Shaolong Tang, Youwei Du
Publisher: American Chemical Society
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2005
Science & research, Research, Nanotechnology, Annealing

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Transferable ordered Ni hollow sphere arrays induced by electrodeposition on colloidal monolayer

Article Abstract:

The study of an electrochemical synthesis of two-dimensionally ordered porous Ni arrays based on polystyrene sphere (PS) colloidal monolayer was described. The formation of hollow sphere arrays was attributed to preferential nucleation on the interstitial sites between PS in the colloidal monolayer and substrate, and growth along PSs' surface.

Author: Yuanyuan Luo, Zhigang Li, Yue Li, Weiping Cai, Guotao Duan, Bingqiang Cao
Publisher: American Chemical Society
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2006
All Other Miscellaneous Chemical Product and Preparation Manufacturing, Chemical preparations, not elsewhere classified, Colloids, Colloids & Related Products, Monomolecular films, Electrodeposition

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Effect of model potential of adsorptive bond on the thermodynamic properties of adsorbed CO molecules on Ni(111) surface

Article Abstract:

The effect of anharmonicity on the adsorption of CO molecules on the Ni(111) surface is investigated. Isochoric heat capacity and entropy depend on the model potential significantly, and the differences might be as high as 69% and 55% for isochoric heat capacity and entropy, respectively.

Author: Shamkhali, Amir N., Parsafar, Gholamabbass
Publisher: American Chemical Society
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2006
Industrial Gas Manufacturing, Industrial gases, Carbon Monoxide, Chemical thermodynamics

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Subjects list: Analysis, Nickel, Thermal properties, Chemical properties, Nickel (Metal)
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