高纯度盐_能源材料_材料科学-默克生命科学

我们提供各种高纯度盐类,包括硝酸盐、草酸盐、卤化物、硫酸盐、碳酸盐和醋酸盐,有无水和水合两种形式。经电感耦合等离子体质谱法(ICP-MS)或电感耦合等离子体光发射光谱法(ICP-OES)验证,纯度在 99.9% 到 99.999% 之间。
我们的高纯度离子化合物是各种合成方法(包括固态、溶胶-凝胶和其他方法,如水热和微波辅助技术)的最佳盐前体。它们是合成用于电池、太阳能电池、催化剂、燃料电池、熔盐反应器、传感器等应用的纳米材料、复合材料和无机复合物的理想选择。
产品
Products

超高纯盐类
超高纯材料对研究、新技术开发和先进产品制造至关重要,在这些领域,卓越的性能和质量至关重要。我们的产品组合包括纯度超过 99.998%、痕量金属杂质少于百万分之十的盐类。我们的 ISO 9001 质量管理体系可确保批次间的高度一致性,并提供特定批次的分析证书 (CoA),以确保性能可靠。

AnhydroBeads™盐
我们的AnhydroBeads™ 盐类因其高纯度、单分散和自由流动的特性,可在对空气和湿度敏感的应用中提供卓越的性能。这些无水盐是在严格的干燥生产条件下开发和测试的,以确保水含量达到百万分之一级、痕量金属纯度从 99.9% (3N) 到 99.999% (5N)不等、表面积与体积比低(直径约为 2 毫米)。
特点和优点
- 降低环境湿度吸收率,最大限度地减少结块、粉尘和静电积聚,从而使重复操作更加方便
- Easier pneumatic loading of salts to sample chambers due to fewer clogging issues associated with powdered salt counterparts
- Low volatility for safe and stable use, storage, and transport


Technipur™工业产品
我们的Technipur™产品为技术应用提供特殊产品,同时提供供应链安全性和透明度、一致的质量和增强的文档。我们为各行各业提供了广泛的适用产品组合,旨在满足这些需求。
特点和优势
- 大型预包装,价格实惠
- 可扩展的供应链,满足您的制造要求
- 保持库存可用性以实现快速交付
- 提供质量和文档支持
- 可扩展的供应链以满足您的制造要求
- 保持库存可用性以实现快速交付
- 提供质量和文档支持

电池前驱体
我们提供各种优质盐前驱体,用于合成电池材料,包括高纯度锂盐和过渡金属盐(如钴、锰、镍、铝和铁)。无论是固态反应、共沉淀还是湿化学处理,我们的高纯度前体都能确保为客户合成出可靠、稳定的高性能电池材料。

催化剂
我们提供广泛用作催化剂的各种过渡盐、稀土盐和贵金属盐。这些盐可用作涂层、PEM 燃料电池的催化剂前体以及有效的均相催化剂。贵重的均相催化剂可完全溶解于反应混合物中,在温和的条件下实现高产率。
无论您对有机或有机金属催化有何需求,我们都能为您提供所需的过渡金属催化剂。

透辉石太阳能电池
金属卤化物透辉石太阳能电池的质量和耐用性在很大程度上受到制备透辉石层时使用的前驱体材料和沉积方法的影响。我们提供 高纯度盐前驱体,如卤化铅、卤化锡和卤化铯,由于它们在有机溶剂中的溶解性,适合采用沉积方法。

电镀
我们提供高纯度到超高纯盐类,在电镀过程中用作电解液。这些盐类是金属离子的来源,有助于产生理想的特性,如导电性、光学吸引力,以及形成抗腐蚀、抗温度和抗机械应力的保护层。
相关资源
- 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.
- Article: High Purity Organics
如要继续阅读,请登录或创建帐户。
暂无帐户?