ジスプロシウム(7429-91-6)

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ジスプロシウム 製品概要
化学名:ジスプロシウム
英語化学名:DYSPROSIUM
别名:Dysprosium, Powder, -40 Mesh 99.9%;DysprosiuM rod, 6.35MM (0.25in) dia, 99.7% (Metals basis excluding Ta);DYSPROSIUM ICP STANDARD TRACEABLE TO SRM;DY000240;DYSPROSIUM INGOT, 3N: (99.9%REO);DYSPROSIUM CHIPS, 3N: (99.9%REO);DYSPROSIUM: 99.9%, CHIPS AMPOULED UNDER ARGON;DYSPROSIUM: 99.95%, DENTRITIC PIECES
CAS番号:7429-91-6
分子式:Dy
分子量:162.5
EINECS:231-073-9
カテゴリ情報:metal or element;Catalysis and Inorganic Chemistry;Chemical Synthesis;Dysprosium;DysprosiumMetal and Ceramic Science;Metals
Mol File:7429-91-6.mol
ジスプロシウム
ジスプロシウム 物理性質
融点 1412 °C (lit.)
沸点 2567 °C (lit.)
比重(密度) 8.559 g/mL at 25 °C (lit.)
貯蔵温度 15-25°C
溶解性soluble in dilute acid solutions
外見 powder
比重8.54
Silver-gray
PH0.5 (20°C in H2O)
電気抵抗率 (resistivity)89 μΩ-cm, 20°C
水溶解度 reacts slowly with H2O; soluble dilute acids [HAW93]
Sensitive Air & Moisture Sensitive
Merck 13,3515
暴露限界値ACGIH: TWA 2 ppm; STEL 4 ppm
OSHA: TWA 2 ppm(5 mg/m3)
NIOSH: IDLH 25 ppm; TWA 2 ppm(5 mg/m3); STEL 4 ppm(10 mg/m3)
CAS データベース7429-91-6(CAS DataBase Reference)
EPAの化学物質情報Dysprosium (7429-91-6)
安全性情報
主な危険性 F,C
Rフレーズ 11-34
Sフレーズ 22-24/25-36/37/39-33-16-45-27-26-23
RIDADR UN 3089 4.1/PG 2
WGK Germany 3
10
TSCA Yes
国連危険物分類 8
容器等級 III
HSコード 28053012
MSDS Information
ProviderLanguage
ACROS English
SigmaAldrich English
ALFA English
ジスプロシウム Usage And Synthesis
解説

Dy.原子番号66の元素.電子配置[Xe]4f 106s2の周期表3族ランタノイド元素.希土類元素イットリウム族の一つ.原子量162.500(1).質量数156(0.056(3)%),158(0.095(3)%),160(2.329(18)%),161(18.889(42)%),162(25.475(36)%),163(24.896(42)%),164(28.260(54)%)の7種の安定同位体と,質量数138~173の放射性同位体が知られている.単体は展性に富んだ灰色の金属。元素記号Dy 原子番号66。原子量162.5。ディスプロシウム。

森北出版「化学辞典(第2版)

性質

ジスプロシウム,融点1412 ℃,沸点2562 ℃.密度8.55 g cm-3(20 ℃).第一イオン化エネルギー5.939 eV.酸化数3.Dy3+ イオンの外殻電子配置は4f 9で塩は強い磁性を示す(磁気能率10.55μB).ほかの希土類元素と同様 DyⅢで化合物をつくる.結晶および水溶液は黄または黄緑色で,ホルミウムの化合物と同様にいちじるしい常磁性を示す.

用途Dyのもっとも重要な用途は,Nd-Fe-B(ネオジム)磁石希土類磁石)の高温域の保磁力・磁束密度を高めるはたらきをもつ添加剤で,近年価格が急上昇している.
化学的特性metal ingots
物理的性質Dysprosium is a dense (specific gravity = 8.540) metal. It is soft, and when cut with aknife, it appears as a silvery metal that oxidizes slowly at room temperatures. The white oxide(Dy2O3) that forms on the outside of the metal sloughs off, exposing a fresh surface of themetal for more oxidation. The oxide of dysprosium is also called dysprosia.
Dysprosium
Its melting point is 1,412°C, its boiling point is 2,567°C, and its density is 8.540g/cm3.
同位体There are a total of 39 isotopes of dysprosium, seven of which are stable. Theatomic mass of the stable isotopes ranges from 156 to 164 amu (atomic mass units oratomic weight). The unstable isotopes of dysprosium have half-lives ranging from 150milliseconds to 3.0×10+6 years. All of the unstable isotopes are radioactive and are producedartificially.
名前の由来The word dysprosium was derived from the Greek word dysprositos, which means “difficult to approach.”
天然物の起源Dysprosium is the 43rd most abundant element on Earth and ranks ninth in abundanceof the rare-earths found in the Earth’s crust. It is a metallic element that is usually found asan oxide (disprosia). Like most rare-earths, it is found in the minerals monazite and allanite,which are extracted from river sands of India, Africa, South America, and Australia and thebeaches of Florida. It is also found in the mineral bastnasite in California.
来歴Dysprosium was discovered in 1886 by Lecoq de Boisbaudran, but not isolated. Neither the oxide nor the metal was available in relatively pure form until the development of ion-exchange separation and metallographic reduction techniques by Spedding and associates about 1950. Dysprosium occurs along with other so-called rare-earth or lanthanide elements in a variety of minerals such as xenotime, fergusonite, gadolinite, euxenite, polycrase, and blomstrandine. The most important sources, however, are from monazite and bastnasite. Dysprosium can be prepared by reduction of the trifluoride with calcium. The element has a metallic, bright silver luster. It is relatively stable in air at room temperature, and is readily attacked and dissolved, with the evolution of hydrogen, by dilute and concentrated mineral acids. The metal is soft enough to be cut with a knife and can be machined without sparking if overheating is avoided. Small amounts of impurities can greatly affect its physical properties. While dysprosium has not yet found many applications, its thermal neutron absorption cross-section and high melting point suggest metallurgical uses in nuclear control applications and for alloying with special stainless steels. A dysprosium oxide-nickel cermet has found use in cooling nuclear reactor rods. This cermet absorbs neutrons readily without swelling or contracting under prolonged neutron bombardment. In combination with vanadium and other rare earths, dysprosium has been used in making laser materials. Dysprosium-cadmium chalcogenides, as sources of infrared radiation, have been used for studying chemical reactions. The cost of dysprosium metal has dropped in recent years since the development of ionexchange and solvent extraction techniques, and the discovery of large ore bodies. Thirty-two isotopes and isomers are now known. The metal costs about $6/g (99.9% purity).
特性Dysprosium, with characteristics similar to most of the other rare-earths, was difficult todiscover. Although dysprosium does not react rapidly with moist air at low temperatures, it does react with water and the halogens at high temperatures. It also reacts in solutions of weakacids. At low temperatures, dysprosium is strongly magnetic.
使用There are not many uses for dysprosium. Scientists continue to experiment with it as apossible alloy metal (it has a high melting point) to be mixed with steel to make control rodsthat absorb neutrons in nuclear reactors. There are only a few commercial uses for dysprosium,such as a laser material and as a fluorescence activator for the phosphors used to produce thecolors in the older TV and computer cathode ray tubes (CRTs). When combined with steelor nickel as an alloy, it makes strong magnets.
使用Dysprosium is most commonly used as in Neodymium-iron-boron high strength permanent magnets. While it has one of the highest magnetic moments of any of the rare earths (10.6uB), this has not resulted in an ability to perform on its own as a practical alternative to Neodymium compositions.
It is however now an essential additive in NdFeB production. It is also used in special ceramic compositions based on BaTiO formulations.
Dysprosium is used, in conjunction with Vanadium and other elements, in making laser materials and commercial lighting. Nanofibers of Dysprosium compounds have high strength and large surface area. Therefore, they can be used to reinforce other materials and as a catalyst.
Recent research has examined the use of Dysprosium in Dysprosium-iron-garnet (DyFeG) and silicon implanted with Dysprosium and Holmium to form donor centers.
Dysprosium Metal is an important additive for NdFeB permanent magnets to raise the Curie temperature and improve temperature coefficiency. Another most promising use of high purity Dysprosium Metal is in the magnetostrictive alloy TEFENOL-D. There are also other applications for some special master alloys. Dysprosium Metal can be further processed to various shapes of ingots, pieces, wires, foils, slabs, rods, discs and powder. It is highly susceptible to magnetization, they are employed in various data-storage applications, such as in hard disks.
定義A soft malleable silvery element of the lanthanoid series of metals. It occurs in association with other lanthanoids. One of its few uses is as a neutron absorber in nuclear reactors; it is also a constituent of certain magnetic alloys.
定義dysprosium: Symbol Dy. A soft silverymetallic element belonging tothe lanthanoids; a.n. 66; r.a.m.162.50; r.d. 8.551 (20°C); m.p. 1412°C;b.p. 2562°C. It occurs in apatite,gadolinite, and xenotime, fromwhich it is extracted by an ionexchangeprocess. There are sevennatural isotopes and twelve artificialisotopes have been identified. It findslimited use in some alloys as a neutronabsorber, particularly in nucleartechnology. It was discovered by PaulLecoq de Boisbaudran (1838–1912) in1886.
危険性Dysprosium nitrate [Dy2(NO3)3] is a strong oxidizing agent and will ignite when in contactwith organic material. Most dysprosium salts are toxic if ingested or inhaled.
燃焼性と爆発性Flammable
reaction suitabilityreagent type: catalyst
core: dysprosium
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