酸化ほう素

酸化ほう素 化学構造式
1303-86-2
CAS番号.
1303-86-2
化学名:
酸化ほう素
别名:
三酸化二ほう素;三酸化ほう素;酸化ほう素;1,3-ジボラ-2,4,5-トリオキサビシクロ[1.1.1]ペンタン;ボロンオキシド;水ホウ酸;無水ホウ酸;酸化ほう素 三酸化二ほう素無水ほう酸;酸化ほう素 (99.6%-B);酸化ほう素 (99.9+%-B);酸化ほう素, 99%;酸化ほう素, 99.98% (metals basis);酸化ほう素, 99.999% (metals basis);酸化ホウ素(B2O3)
英語名:
Boron oxide
英語别名:
B2O3;BORON TRIOXIDE;BORIC ANHYDRIDE;BORIC OXIDE;B-O;boricacid(hbo2),anhydride;Boria;Boron anhydride;Boron sesquioxide;Anhydrous Boric Acid
CBNumber:
CB1264526
化学式:
B2O3
分子量:
69.62
MOL File:
1303-86-2.mol
MSDS File:
SDS

酸化ほう素 物理性質

融点 :
450 °C(lit.)
沸点 :
1860 °C
比重(密度) :
2.46 g/mL at 25 °C(lit.)
かさ密度:
900-1100kg/m3
蒸気密度:
>1 (vs air)
蒸気圧:
1Pa
闪点 :
1860°C
貯蔵温度 :
Inert atmosphere,Room Temperature
溶解性:
36g/リットル
外見 :
ペレット
色:
白い
比重:
2.46 +/- 0.01
臭い (Odor):
無臭
PH:
4 (10g/l, H2O, 25℃)
由来生物:
human blood
水溶解度 :
36g/L(25℃)
比熱容量:
Cp(crystal): 0.9 J/(g·K); Cp(gas): 0.96 J/(g·K), at 25℃
Sensitive :
Hygroscopic
Merck :
14,1337
晶系:
三方
空间群:
P31
晶格常数:
a/nmb/nmc/nmα/oβ/oγ/oV/nm3
0.43340.43340.833490901200.1356
暴露限界値:
ACGIH:TLV-TWA 10 mg/m3
OSHA:PEL-TWA 15 mg/m3 (total dust)
NIOSH:REL-TWA 10 mg/m3 (total dust)
安定性::
安定。湿気に敏感。水と相容れない。
InChI:
1S/B2O3/c3-1-5-2-4
InChIKey:
JKWMSGQKBLHBQQ-UHFFFAOYSA-N
SMILES:
O=BOB=O
CAS データベース:
1303-86-2(CAS DataBase Reference)
NISTの化学物質情報:
Diboron trioxide(1303-86-2)
EPAの化学物質情報:
Boric oxide (1303-86-2)

安全性情報

主な危険性  Xi,T
Rフレーズ  36/37/38-61-60
Sフレーズ  26-37/39-45-53
OEB B
OEL TWA: 10 mg/m3
WGK Germany  1
RTECS 番号 ED7900000
3-10
TSCA  TSCA listed
HSコード  28100010
ストレージクラス 6.1D - Non-combustible acute toxic Cat.3
toxic hazardous materials or hazardous materials causing chronic effects
Hazard Classifications Repr. 1B
有毒物質データの 1303-86-2(Hazardous Substances Data)
毒性 LD50 orally in Rabbit: 3150 mg/kg
IDLA 2,000 mg/m3
化審法 一般化学物質
安衛法 57,57-2
PRTR法 第1種指定化学物質

酸化ほう素 価格 もっと(34)

メーカー 製品番号 製品説明 CAS番号 包装 価格 更新時間 購入
富士フイルム和光純薬株式会社(wako) W01AFAA11707 酸化ほう素, 99%
Boron oxide, 99%
1303-86-2 500g ¥22830 2024-03-01 購入
富士フイルム和光純薬株式会社(wako) W01AFAA11707 酸化ほう素, 99%
Boron oxide, 99%
1303-86-2 2500g ¥89380 2024-03-01 購入
富士フイルム和光純薬株式会社(wako) 05834-08
Boron trioxide
1303-86-2 500g ¥9500 2024-07-01 購入
関東化学株式会社(KANTO) 04239-01 酸化ほう素 >90.0%(T)
Boron trioxide >90.0%(T)
1303-86-2 500g ¥4100 2024-07-01 購入
関東化学株式会社(KANTO) 04239-00 酸化ほう素 >95.0%(T)
Boron trioxide >95.0%(T)
1303-86-2 500g ¥6500 2024-07-01 購入

酸化ほう素 MSDS


Boron oxide

酸化ほう素 化学特性,用途語,生産方法

外観

白色〜褐色, 結晶性粉末〜粉末

溶解性

水に可溶 (2.8g/100ml, 20℃), エタノールに可溶。

解説

酸化ホウ素(Ⅲ):B2O3(69.62).無水ホウ酸,三酸化二ホウ素ともいう.オルトホウ酸を赤熱すると無色のガラス状のものが得られる.密度1.84 g cm-3.融点577 ℃,沸点1500 ℃ 以上.水に溶けてメタホウ酸を経てオルトホウ酸を生じる.両性酸化物で,硫酸,リン酸に溶けてB(HSO4)3,BPO4を生じるが,加水分解するとB2O3を沈殿する.フッ素とは常温で反応してBF3と O2 とを生じるが,ほかのハロゲンとは反応しない.アルカリ金属,マグネシウム,アルミニウムなどで還元される.ギ酸ナトリウムと加熱しても,ホウ素に還元される.炭素では赤熱しても還元されない.耐熱ガラス,光学ガラス,窯業材料,顔料,電子セラミックスなどの原料として用いられる.

用途

ほう素化合物及びガラス加工品原料

用途

吹管分析、ガラス及びセラミック等の原料、無機合成原料、触媒。

用途

発光ダイオード素材?ホウ素化合物原料、ケイ素塩化学分析試薬

用途

ガラス、ガラスファイバ、フリット、セラミック、難燃剤、触媒、産業用オイル、殺生物剤、殺虫剤

応用

ガラス製造ホウ酸酸化物は耐熱ガラスや光学ガラスの製造に重要な役割を担いますセラミックセラミックの質感を向上させるためにホウ酸酸化物が添加されることがあります医薬品ホウ酸酸化物は一部の薬剤の製造過程で使用されることがありその安全性が求められます

化学的特性

ビョウウサンホウ素酸BoricAcid酸化物とは一般的にホウ酸ホウ素およびその他の要素から構成される化合物のグループですこれらの化合物はホウ素が酸素と結びつくことで構成される酸化物であり工業や科学研究において多岐にわたる用途があります

化学的特性

Boron oxide is a noncombustible, colorless, semitransparent lumps or hard, white, odorless crystals, with slightly bitter taste.
説明図

物理的性質

Colorless glassy solid or vitreous crystal; hexagonal crystal system; slightly bitter taste; hygroscopic; density 2.55 g/cm3; melts at 450°C; vaporizes at 1,500°C; slightly soluble in cold water (3.3%), soluble in alcohol and boiling water (20%).

使用

Boron oxide was used as the intermediate glass layer at a bonding temperature of 450°C. In preparation of fluxes; component of enamels and glass; catalyst in organic reaction.
In metallurgy; in analysis of silicates to determine SiO2 and alkalies; in blowpipe analysis.

製造方法

Boric oxide is produced by treating borax with sulfuric acid in a fusion furnace. At temperatures above 750°C, the molten boric acid layer separates out from sodium sulfate. It then is decanted, cooled, and obtained in 96-97% purity. Boric acid above 99% purity may be obtained by fusing granular material.
Boric oxide may be prepared by heating boric acid.
2B(OH)3 → B2O3 + 3H2O

主な応用

Electronics Industry: Boron trioxide is one of the key materials in the manufacture of semiconductors and liquid crystal displays (LCDs). It serves as a dopant, helping to regulate the electrical conductivity of silicon wafers. Furthermore, it is utilised in the production of optical fibres, ensuring stable and efficient signal transmission. 
Glass and Ceramics Industry: In glass production, boron trioxide significantly enhances thermal resistance and chemical stability. For instance, laboratory-grade heat-resistant glass (such as Pyrex) contains boron trioxide. Within the ceramics sector, it lowers the melting point of glazes, thereby improving ceramic strength and lustre.
Flame Retardants: Boron trioxide serves as a key component in numerous flame retardants. It forms protective layers at elevated temperatures to inhibit flame propagation, finding extensive application in building materials, textiles, and plastic products.
Nuclear Industry: Within nuclear reactors, boron trioxide functions as a neutron absorber, aiding in the regulation of nuclear reaction rates to ensure safe reactor operation.

調製方法

Boric oxide is produced by thermal fusion of boric acid, forming a clear transparent glass-like solid that is subsequently ground into white vitreous granules. It is used principally in the manufacture of glass and vitreous products.

一般的な説明

Colorless, semi-transparent glassy lumps or hard white odorless crystals. Mp 450°C; bp: 1860°C. Density: 2.46 g cm-3. Moderately soluble in water. Used as an insecticide; as the starting material for the synthesis of other boron compounds; as a fluxing agent in enamels and glasses; and in mixture with 2-6% boron nitride, as a bonding agent in the hot isostatic pressing of boron nitride ceramics.

反応プロフィール

Boron oxide is non-combustible. Of generally low chemical reactivity. Reacts exothermically but slowly with water to form boric acid, a weak acid. Reacts exothermically with strong bases. May react with strong reducing agents such as metal hydrides, metal alkyls to generate flammable or explosive gases. May react violently on contact with bromine pentafluoride. Corrosive to metals in the presence of air.

危険性

Eye and upper respiratory tract irritant.

健康ハザード

Boron oxide is an eye and respiratory irritant. In 113 workers exposed to boron oxide and boric acid dusts, there were statistically significant increases in symptoms of eye irrita- tion; dryness of the mouth, nose, and throat; sore throat; and productive cough compared with controls. The mean exposure level was 4.1mg/m3 , with a range of 1.2–8.5mg/m3 . Exposures may occasionally have exceeded 10 mg/m3 . Because of mixed exposures, the study does not indicate whether boron oxide or boric acid dust is more important in causing symp- toms, nor does it indicate the minimum duration of exposure necessary to produce symptoms.
Excessive absorption of boron oxide may lead to cardiovascular collapse, alterations in temperature regulation, and coma.

化学性质

色で,吸湿性のガラス状固体である。水と反応しやすく,発熱してホウ酸となる。

職業ばく露

Boron oxide is used in glass manufacture and the production of other boron compounds. It is used in fluxes, enamels, drying agents, and as a catalyst.

輸送方法

UN3077 Environmentally hazardous substances, solid, n.o.s., Hazard class: 9; Labels: 9—Miscellaneous hazardous material, Technical Name Required.

合成方法

ホウ素の燃焼あるいはホウ酸の脱水で得られる。

不和合性

Incompatible with bromine pentafluoride, calcium oxide. Reacts slowly with water, forming boric acid. Reacts exothermically with alkaline material and strong bases. May react with strong reducing agents such as metal hydrides, metal alkyls to generate flammable or explosive gases. May react violently on contact with bromine pentafluoride. Corrosive to metals in the presence of air.

参考文献

S.V. Berger, Acta Chem. Scand., 7, 611 (1953), DOI: 10.3891/acta.chem.scand.07-0611.

参考文献

[1] A. MERGEN   M. B  M H Demirhan. Processing of boric acid from borax by a wet chemical method[J]. Advanced Powder Technology, 2003, 14 3: Pages 279-293. DOI:10.1163/15685520360685947.
[2] TAKWA E. ELLAKWA. Reviewing and exploring boron oxide’s role in bioactive glasses: a synthesis of modeling and applications[J]. Journal of the Australian Ceramic Society, 2024, 61 2: 719-732. DOI:10.1007/s41779-024-01103-w.
[3] LU DENG   Jincheng D. Development of boron oxide potentials for computer simulations of multicomponent oxide glasses[J]. Journal of the American Ceramic Society, 2018, 102 5: 2482-2505. DOI:10.1111/jace.16082.
[4] S. WATANABE. Antimicrobial properties of the products from the reaction of various ahinoalcohols and boric anhydride[J]. Materials Chemistry and Physics, 1988, 19 1: Pages 191-195. DOI:10.1016/0254-0584(88)90011-9.

酸化ほう素 上流と下流の製品情報

原材料

準備製品


酸化ほう素 生産企業

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酸化ほう素  スペクトルデータ(IR)


1303-86-2(酸化ほう素)キーワード:


  • 1303-86-2
  • Boria
  • boricoxide(b2o3)
  • Boron oxide (B2O3)
  • BORON OXIDE
  • BORON (III) TRI-OXIDE
  • BORIC ACID-ANHYDRIDE
  • BORIC ACID, ANHYDROUS
  • DI-BORON TRIOXIDE
  • Boron sesquioxide
  • boronoxide(b2o3)
  • boronsesquioxide
  • caswellno.109b
  • Fused boric acid
  • fusedboricacid
  • oxydedebore
  • BORON OXIDE, PELLETS, 2-2.5CM DIAM., 99. 99+%
  • BORON TRIOXIDE GRANULATED
  • BORON OXIDE, 99.98%
  • BORON OXIDE 99%
  • BORON OXIDE, 99.999%
  • Di-BoronTrioxide(BoricOxide)
  • BORON TRIOXIDE GR
  • Boricanhydride=Trioxydedebore
  • Boron oxide, Puratronic, 99.999% (metals basis)
  • Boron oxide, Puratronic , (H{2}O 200ppm), 99.999% (metals basis)
  • Boron oxide, Puratronic (metals basis)
  • boron oxide, puratronic , (h 200ppm)
  • 1,3-Dibora-2,4,5-trioxabicyclo[1.1.1]pentane
  • Boron oxide/99.99%
  • Boric anhydride pellets
  • 三酸化二ほう素
  • 三酸化ほう素
  • 酸化ほう素
  • 1,3-ジボラ-2,4,5-トリオキサビシクロ[1.1.1]ペンタン
  • ボロンオキシド
  • 水ホウ酸
  • 無水ホウ酸
  • 酸化ほう素 三酸化二ほう素無水ほう酸
  • 酸化ほう素 (99.6%-B)
  • 酸化ほう素 (99.9+%-B)
  • 酸化ほう素, 99%
  • 酸化ほう素, 99.98% (metals basis)
  • 酸化ほう素, 99.999% (metals basis)
  • 酸化ホウ素(B2O3)
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