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Lead(II) Bromide99.9 % Cas10031-22-8 Perovskite thin-film solar materials global lowest price

商品の詳細:
起源の場所: xi'an
ブランド名: Wango
証明: GMP
モデル番号: ワンゴ-0008
お支払配送条件:
最小注文数量: 毎回1000グラム、サンプル:10グラム
価格: FOB price 800-900usd/kg ,can be Negotiable .
パッケージの詳細: 紙ドラム梱包1個あたり1~25kg
受渡し時間: 3-5営業日
支払条件: ウエスタンユニオン、マネーグラム、t/t
供給の能力: 300kg 1か月

詳細情報

形状: 臭化鉛(II) 他の名前: 臭化鉛(II)
アレルゲン情報: ヨウ化メチルアンモニウム アプリケーション: ペロブスカイト材料
分子式: C17H8Cl2F8N2O3 別の名前: エドキサバン
起源: 中国 貯蔵寿命: 2年
州: 白い微粉末 工場からの直接供給: ええ (ノートロピックスデポ)
製品の使用: 経口摂取 保管条件: 涼しく乾燥した場所に保管してください
外見: 白いクリスタルパウダー 関数: 冷却代理店
学年: 医薬品

製品の説明

Lead(II) Bromide99.9 % Cas10031-22-8 perovskite material Electronic materials with low price

 

 

 

 

LEAD(II) BROMIDE Basic information
Physical Properties Uses Preparation Toxicity
Product Name: LEAD(II) BROMIDE
Synonyms: LEAD(+2)BROMIDE;LEAD BROMIDE;LEAD DIBROMIDE;LEAD(II) BROMIDE;Lead bromide (PbBr2);leadbromide(lead(ii)bromide);leadbromide(pbbr2);PbBr2
CAS: 10031-22-8
MF: Br2Pb
MW: 367.01
EINECS: 233-084-4
Product Categories: Crystal Grade Inorganics;Catalysis and Inorganic Chemistry;Chemical Synthesis;Lead Salts;LeadMetal and Ceramic Science;Salts;metal halide;Catalysis and Inorganic Chemistry;Chemical Synthesis;Crystal Grade Inorganics;Lead;Lead Salts;Materials Science;Metal and Ceramic Science;Ultra-High Purity Materials
Mol File: 10031-22-8.mol
Lead(II) Bromide99.9 % Cas10031-22-8  Perovskite thin-film solar materials  global lowest  price 0

 

 

 

 

Physical Properties White orthorhombic crystals; density 6.66 g/cm3; melts at 373°C; forms a horn-like mass on solidification; vaporizes at 916°C; decomposes slowly on exposure to light; sparingly soluble in cold water (4.55 g/L at 0°C and 8.44 g/L at 20°C, respectively); moderately soluble in boiling water (44.1g/L at 100°C); Ksp 6.60x10–6 at 25°C; insoluble in alcohol; slightly soluble in ammonia; soluble in alkalies and also in sodium or potassium bromide solutions.
Uses Lead(II) bromide is used for developing images in photography; as inorganic filler in fire-retardant plastics; as a photopolymerization catalyst for acrylamide monomer; and as a welding flux for welding aluminum or its alloys to other metals.
Preparation Lead bromide is prepared by treating an aqueous solution of lead nitrate with hydrobromic acid or with sodium or potassium bromide:
Pb2+ + 2Br¯ → PbBr2
The solution is allowed to stand to let the precipitate settle.
The compound also may be obtained by adding lead carbonate or lead monoxide to hydrobromic acid.
Toxicity Moderately toxic by ingestion. The toxic effects are those of lead.
Chemical Properties white, ortho-rhomb crystal(s); -80 mesh with 99.999% purity; enthalpy of vaporization 133 kJ/mol; enthalpy of fusion 16.44 kJ/mol; obtained from PbO or PbCO3 and HBr; finds use as a photopolymerization catalyst and in photoduplication processes in the 365 nm region [KIR78] [CER91] [CRC10] [MER06]
Physical properties White orthorhombic crystals; density 6.66 g/cm3; melts at 373°C; forms a horn-like mass on solidification; vaporizes at 916°C; decomposes slowly on exposure to light; sparingly soluble in cold water (4.55 g/L at 0°C and 8.44 g/L at 20°C, respectively); moderately soluble in boiling water (44.1g/L at 100°C); Ksp 6.60x10-6 at 25°C; insoluble in alcohol; slightly soluble in ammonia; soluble in alkalies and also in sodium or potassium bromide solutions.
Uses Lead bromide is used for developing images in photography; as inorganic filler in fire-retardant plastics; as a photopolymerization catalyst for acrylamide monomer; and as a welding flux for welding aluminum or its alloys to other metals.
Uses It is used in the field of antirust, pigment and photograph. The molten lead(II) bromide acts as an electrolyte. Lead(II) bromide provides a high concentration of lead(II) ions and bromide ions to carry the current during the electrolysis process. The rare-earth-doped alkali-lead bromide crystals (potassium lead bromide (or) KPB; rubidium lead bromide or RPB) emerge as promising new low-phonon-energy host materials for mid-IR applications and are useful for solid state lasers. Hybrid organic/lead halide perovskites are promising materials for solar cell fabrication.
Uses Lead(II) bromide (PbBr2) can be used in the fabrication of nanoscale quasi-2D layered perovskites, which are potentially utilized as light-emitting materials. It can also be used for the synthesis of deep blue fluorescent lead bromide perovskite microdisks. These microdisks can be used as direct bandgap semiconductors for light-emitting diodes (LEDs).
reaction suitability reagent type: catalyst
core: lead
Materials Uses Lead bromide is one of the most common precursors used in the preparation of perovskite-based opto-electronic systems, including light-emitting diodes (LEDs) and perovskite solar cells (PSCs).
Purification Methods Crystallise it from water containing a few drops of HBr (25mL of water per gram PbBr2) between 100o and 0o. A neutral solution is evaporated at 110o, and the crystals that separate are collected by rapid filtration at 70o and dried at 105o (to give the monohydrate). Its solubility in H2O is 0.5% (at ~10o) and 5% (at ~ 100o). To prepare the anhydrous bromide, the hydrate is heated for several hours at 170o and then in a Pt boat at 200o in a stream of HBr and H2. Finally it is fused [Clayton et al. J Chem Soc, Faraday Trans 1 76 2362 1980].

 

 

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