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Antimonide

About: Antimonide is a research topic. Over the lifetime, 972 publications have been published within this topic receiving 10981 citations. The topic is also known as: antimonides.


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Patent
14 Sep 2004
TL;DR: A photocathode manufacturing intermediary article (24) includes a substrate layer (26), and an active layer (20) that is carried by the substrate layer as mentioned in this paper, which includes photoemissive alkali antimonide material that is epitaxially grown on the substrate.
Abstract: A photocathode manufacturing intermediary article (24) includes a substrate layer (26), and an active layer (20) that is carried by the substrate layer (26). The active layer (20) includes photoemissive alkali antimonide material that is epitaxially grown on the substrate (26).

1 citations

Patent
02 Jan 2013
TL;DR: In this article, a preparation method for a nano composite thermoelectric material is presented, which includes the following steps of mixing sodium hydroxide and sodium borohydride in solvent to obtain reducing solution; mixing an antimony source compound, a cobalt source compound and mesoporous carbon in volatile and polar organic solvent and drying to obtain a first mixture; mixing the reducing solution with the first mixture, and reacting and drying the second mixture to get a second mixture; and placing the two mixture in nitrogen and hydrogen mixing atmosphere at the temperature of 380-550 DE
Abstract: The invention discloses a preparation method for a nano composite thermoelectric material. The preparation method comprises the following steps of mixing sodium hydroxide and sodium borohydride in solvent to obtain reducing solution; mixing an antimony source compound, a cobalt source compound, a complexing agent and mesoporous carbon in volatile and polar organic solvent and drying to obtain a first mixture; mixing the reducing solution with the first mixture, and reacting and drying to obtain a second mixture; and placing the second mixture in nitrogen and hydrogen mixing atmosphere at the temperature of 380-550 DEG C to be subjected to heat treatment, and enabling the second mixture to react so as to obtain the nano composite thermoelectric material. Compared with the prior art, the preparation method has the advantage that prepared nano-level cobalt antimonide is filled in ducts of the mesoporous carbon, so that agglomeration and growth of the nano-level cobalt antimonide in a heat treatment process is avoided by a limiting effect of the ducts of the mesoporous carbon. Experiment results show that monodispersity of nano-particles of the cobalt antimonide in the prepared cobalt antinonide nano composite thermoelectric material is good.

1 citations

Journal ArticleDOI
J.P. Kopp1
TL;DR: In this article, the Neel and paramagnetic Curie temperatures of Nd x Dy 1− x Sb and Dy x Ho 1−x Sb single crystals have been measured.

1 citations

ReportDOI
01 Jan 2013
TL;DR: In this paper, a gate oxide-based compound semiconductors are exploited in n-channel field effect transistors (FETs) operating at high speeds with ultra-low power consumption.
Abstract: : Quantum wells formed from antimonide-based compound semiconductors are exploited in n-channel field-effect transistors (FETs) operating at high speeds with ultra-low power consumption. Compressive strain enhances hole mobilities making these materials strong candidates for p-channel FETs and complementary circuits. Recent work focuses on incorporation of gate oxides and integration of n- and p-channel FETs.

1 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202320
202242
202118
202021
201929
201836