高純度鹽

我們提供多種高純度鹽類,包括硝酸鹽、草酸鹽、鹵化物、硫酸鹽、碳酸鹽和醋酸鹽,有無水和水合兩種形式。經感應耦合等離子體質譜儀 (ICP-MS) 或感應耦合等離子體光學發射光譜儀 (ICP-OES) 驗證,純度範圍從 99.9% 到 99.999%。
我們的高純度離子化合物可作為各種合成方法的最佳鹽前體,包括固態、溶膠凝膠及其他方法,例如水熱法和微波輔助技術。它們是合成奈米材料、複合材料和無機複合物的理想材料,可應用於電池、太陽能電池、催化劑、燃料電池、熔鹽反應器、感測器等。
產品
Ultra-High Purity Salts
Ultra-high-purity 材料對於研究、新技術開發和先進產品製造而言至關重要,在這些領域中,優異的性能和品質是不可或缺的。我們的產品組合以純度超過 99.998% 且微量金屬雜質少於百萬分之十的鹽類為特色。我們的 ISO 9001 品質管理系統可確保批與批之間的高度一致性,並提供特定批次的分析證書 (CoA),以提供可靠的性能。

AnhydroBeads™ 鹽
我們的 AnhydroBeads™ 鹽類因其高純度、單分散和自由流動的特性,可在空氣和濕氣敏感的應用中提供卓越的性能。這些無水鹽是在嚴格的乾燥製造條件下開發和測試的,以確保水含量達到百萬分之一的標準,微量金屬純度範圍從 99.9% (3N) 到 99.999% (5N),而且表面面積體積比較低(直徑約為 2 mm)。
特點& 優點
- 降低環境濕氣的吸收率,將結塊、起灰和靜電積聚減至最低,使重複處理更加容易
- 由於與粉末鹽相對應的堵塞問題較少,因此更容易將鹽氣動裝入樣品室
- 揮發性低,可安全穩定地使用、儲存和運輸

Technipur™工業產品
我們的 Technipur™ 產品提供技術應用的特殊產品,以及供應鏈安全性和透明度、一致的品質和強化的文件。我們為各產業提供廣泛的適用產品組合,就是為了滿足這些需求而設計。
特點& 優勢
- 價格合理的大型預先包裝
- 可擴充的供應鏈,滿足您的製造需求
- 維持庫存可用性以快速交貨
- 提供品質與文件支援

電池前體
我們提供各種優質鹽類前體,專門用於合成電池材料,包括高純度鋰鹽和過渡金屬鹽,例如鈷、錳、鎳、鋁和鐵。無論是用於固態反應、共沉淀或濕式化學處理,我們的高純度前體都能確保為客戶合成出可靠且穩定的高效能電池材料。

Perovskite 太陽能電池
金屬鹵化物perovskite 太陽能電池的品質和耐用性在很大程度上受到製備perovskite 層時所使用的前體材料和沉積方法的影響。我們提供 高純度鹽類前體,例如鹵化鉛、鹵化錫和鹵化銫,由於它們在有機溶劑中的溶解性,因此適用於沉積方法。

Electroplating
我們提供高純度至超高純度鹽類,作為電鍍製程中的電解質。這些鹽類可作為金屬離子的來源,有助於產生理想的特性,例如導電性、光學吸引力,以及建立防腐蝕、溫度和機械應力的保護層。
相關資源
- Flyer: High Purity Inorganics-New Product Launches
Discover our latest high-purity salts, designed to power next-generation innovation. From batteries and semiconductors to solar, pharma, and biotech industries, our new launches deliver exceptional purity, rigorous quality testing, and reliable performance to meet the most demanding applications.
- Article: The Role of High-Purity Metal Salts in Enhancing Chemical Synthesis
Explore how high-purity metal salts drive efficient organic transformations. Read the article to see their benefits in building advanced molecular architectures.
- Brochure: Unlock the Power of Purity: High Purity Metal Salts
Metal salts enhance surface properties in electroplating, improving abrasion and corrosion resistance, lubricity, reflectivity, and aesthetics. Precious metal salts are crucial in electronics and are also used in automotive, jewelry, and aerospace industries.
- Brochure: High-Purity Materials for Molten Salt Applications
Molten salts are efficient for chemical reactions and energy storage due to their high heat capacity and conductivity. In molten salt reactors, they enhance safety and reduce waste by operating at low pressure and serving as both fuel and coolant.
- Material Matters: Nanomaterials: Controlled Synthesis and Properties
A nanomaterial can be broadly defined as any material in which one of its dimensions is less than 100nm. Over the last decade, nanomaterials, including their synthetic methods, have rapidly become one of the most active areas in scientific research, mainly on account of their unique properties in comparison to the traditional micron-sized material.
- Material Matters: Magnetic Nanomaterials: Design and Synthesis
Recent efforts in engineered magnetic nanostructures have emphasized high-sensitivity hybrid organic/inorganic systems for biosensing, bioimaging, drug delivery, as well as selective magnetic isolation and hyperthermia.
- Material Matters: Nanomaterial Synthesis: Creativity at the Nanoscale
Innovative materials start with innovative chemistry. Our cover art highlights the importance of starting materials in the synthesis process, whether they be quantum dots, nanowires, gold nanorods, or engineered carbon nanotube architectures for novel electronic applications.
- Article: High-Energy Lithium-Ion Batteries via a Couette–Taylor-Flow-Reactor
Experts discuss challenges and production processes of nickel-rich layered oxide cathode materials in energy storage systems.
- Article: Magnetic-Plasmonic Hybrid Nanobeads Designed for Imaging and Isolation of Cellular Organelles
Laboratory safety tools: Offers educational tools for chemistry, prioritizing customer health and safety, with online support available.
- Article: Synthesis of Magnetic Nanoparticles for Biosensing
Prof. Randal Lee discusses iron oxide magnetic nanospheres and nanocubes design considerations for biosensing applications.
若要繼續閱讀,請登入或建立帳戶。
還沒有帳戶?為便利客戶閱讀,此頁面中文以機器翻譯完成。雖然我們已盡力確保機器翻譯的準確性,但機器翻譯並非完美。如果您對機器翻譯的內容不滿意,請參考英文版本。