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Heat treatment of anchored nanocatalysts in a non-zero oxidation state and catalysts made by such method

机译:非零氧化态的锚定纳米催化剂的热处理及用该方法制备的催化剂

摘要

A catalyst manufacturing process includes heat treating an intermediate catalyst composition that includes catalyst nanoparticles having catalyst atoms in a non-zero oxidation state bonded to a dispersing/anchoring agent. The catalyst nanoparticles are formed using a dispersing agent having at least one functional group selected from the group of a hydroxyl, a carboxyl, a carbonyl, an amide, an amine, a thiol, a sulfonic acid, sulfonyl halide, an acyl halide, an organometallic complex, and combinations of these. The dispersing agent can be used to form single- or multicomponent supported nanocatalysts. The dispersing agent also acts as an anchoring agent to firmly bond the nanocatalyst to a support. Performing the heat treating process in an inert or oxidative environment to maintain the catalyst atoms in a non-zero oxidation helps maintains a stronger bonding interaction between the dispersing agent and the catalyst atoms. This, in turn, increases the dispersion and/or distribution of catalyst components throughout the supported catalyst.
机译:催化剂制造工艺包括对中间催化剂组合物进行热处理,该中间催化剂组合物包括具有与分散/锚固剂键合的非零氧化态催化剂原子的催化剂纳米颗粒。使用具有选自羟基,羧基,羰基,酰胺,胺,硫醇,磺酸,磺酰卤,酰基卤,有机金属配合物,以及这些的组合。分散剂可用于形成单组分或多组分负载的纳米催化剂。分散剂还充当锚定剂以将纳米催化剂牢固地结合到载体上。在惰性或氧化环境中执行热处理过程以将催化剂原子保持在非零氧化状态有助于保持分散剂与催化剂原子之间更强的键合作用。这进而增加了催化剂组分在整个负载的催化剂中的分散和/或分布。

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