Size control new process for the synthesis of pure metallic nano particles

Joint Authors

Husayn, S. Tajammul
Rana, Sadaf

Source

The Arabian Journal for Science and Engineering. Section C, Theme issues

Issue

Vol. 35, Issue 1C(s) (30 Jun. 2010), pp.74-77, 4 p.

Publisher

King Fahd University of Petroleum and Minerals

Publication Date

2010-06-30

Country of Publication

Saudi Arabia

No. of Pages

4

Main Subjects

Chemistry

Abstract AR

تصف هذه الدراسة طريقة جديدة لإنتاج جسيمات معدنية نانونية في خطوة واحدة، حيث يتم التحكم في حجم الجسيمات بتغيير ضغط الهيدروجين المغذي للتفاعل.

و يتحكم الهيدروجين ليس فقط في حجم الجسيمات، و لكنه أيضا يختزل الجسيمات المعدنية إلى الشكل المعدني الصلب.

Abstract EN

This study describes a new process for the production of metallic nano particles in a single step.

The particles size is controlled by the change in the hydrogen pressure introduced within the reaction.

The hydrogen not only controls the particle size but also reduces metal / metals particles into metallic form.

American Psychological Association (APA)

Husayn, S. Tajammul& Rana, Sadaf. 2010. Size control new process for the synthesis of pure metallic nano particles. The Arabian Journal for Science and Engineering. Section C, Theme issues،Vol. 35, no. 1C(s), pp.74-77.
https://search.emarefa.net/detail/BIM-308322

Modern Language Association (MLA)

Husayn, S. Tajammul& Rana, Sadaf. Size control new process for the synthesis of pure metallic nano particles. The Arabian Journal for Science and Engineering. Section C, Theme issues Vol. 35, no. 1C(s) (Jun. 2010), pp.74-77.
https://search.emarefa.net/detail/BIM-308322

American Medical Association (AMA)

Husayn, S. Tajammul& Rana, Sadaf. Size control new process for the synthesis of pure metallic nano particles. The Arabian Journal for Science and Engineering. Section C, Theme issues. 2010. Vol. 35, no. 1C(s), pp.74-77.
https://search.emarefa.net/detail/BIM-308322

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 77

Record ID

BIM-308322