4.2 Article

Shape Controllable Synthesis of Silver Particles by Selecting the Crystallization Routes

Journal

KONA POWDER AND PARTICLE JOURNAL
Volume -, Issue 37, Pages 166-175

Publisher

HOSOKAWA POWDER TECHNOL FOUNDATION
DOI: 10.14356/kona.2020004

Keywords

crystallization; silver particles; shape control; reaction kinetics; catalytic selectivity

Funding

  1. National Natural Science Foundation of China [91534123]
  2. Hundreds Talent Program from the Chinese Academy of Sciences
  3. State Key Laboratory of Multiphase Complex Systems
  4. Alexander von Humboldt foundation

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Classic crystallization describes a burst nucleation followed by a layer-by-layer atom deposition. The non-classic crystallization refers to particle mediated crystallization process. Different crystallization routes lead to the formation of diverse structured materials. Here we report a rational synthesis of silver particles by selecting the crystallization routes. Silver particles were synthesized by a solution reduction approach. The crystallization routes were regulated by adding amino acids to stabilize silver ions which leads to the decrease of the reduction rate. Without amino acids, silver dendrites were largely formed. With the addition of amino acids, flower-like (low concentration of amino acids) and spherical silver (high concentration of amino acid) particles were synthesized. Three kinds of amino acids were tested and the similar results were obtained. The time-dependent characterization on the evolution of silver particles showed that silver dendrites were formed by the classic atom deposition while the other two morphologies were formed by the combination of classic and non-classic crystallization. The silver particles synthesized were evaluated for ethylene epoxidation and the dendritic particles demonstrated a high selectivity.

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