Watmanee Suthasinee, Nganglumpoon Rungkiat, Hongrutai Nattaphon, Pinthong Piriya, Praserthdam Piyasan, Wannapaiboon Suttipong, Szilágyi Petra Ágota, Morikawa Yoshitada, Panpranot Joongjai
Center of Excellence on Catalysis and Catalytic Reaction Engineering, Biorefinery Cluster, Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University Bangkok 10330 Thailand
Synchrotron Light Research Institute (Public Organization) 111 University Avenue, Suranaree, Muang Nakhon Ratchasima 30000 Thailand.
Nanoscale Adv. 2022 Mar 11;4(10):2255-2267. doi: 10.1039/d1na00876e. eCollection 2022 May 17.
Synthesis of carbon nanostructures at room temperature and under atmospheric pressure is challenging but it can provide significant impact on the development of many future advanced technologies. Here, the formation and growth characteristics of nanostructured carbon films on nascent Ag clusters during room-temperature electrochemical CO reduction reactions (CORR) are demonstrated. Under a ternary electrolyte system containing [BMIm][BF], propylene carbonate, and water, a mixture of sp/sp carbon allotropes were grown on the facets of Ag nanocrystals as building blocks. We show that (i) upon sufficient energy supplied by an electric field, (ii) the presence of negatively charged nascent Ag clusters, and (iii) as a function of how far the C-C coupling reaction of CORR (10-390 min) has advanced, the growth of nanostructured carbon can be divided into three stages: Stage 1: sp-rich carbon and diamond seed formation; stage 2: diamond growth and diamond-graphite transformation; and stage 3: amorphous carbon formation. The conversion of CO and high selectivity for the solid carbon products (>95%) were maintained during the full CORR reaction length of 390 min. The results enable further design of the room-temperature production of nanostructured carbon allotropes and/or the corresponding metal-composites by a viable negative CO emission technology.
在室温及大气压下合成碳纳米结构具有挑战性,但它可为许多未来先进技术的发展带来重大影响。在此,展示了室温电化学CO还原反应(CORR)过程中在新生Ag团簇上纳米结构碳膜的形成及生长特性。在包含[BMIm][BF]、碳酸丙烯酯和水的三元电解质体系下,作为构建单元的sp/sp碳同素异形体混合物生长在Ag纳米晶体的晶面上。我们表明:(i)在电场提供足够能量时;(ii)存在带负电荷的新生Ag团簇;(iii)作为CORR的C-C偶联反应(10 - 390分钟)推进程度的函数,纳米结构碳的生长可分为三个阶段:阶段1:富含sp的碳和金刚石晶种形成;阶段2:金刚石生长及金刚石-石墨转变;阶段3:非晶碳形成。在390分钟的整个CORR反应过程中,CO的转化率和对固体碳产物的高选择性(>95%)得以保持。这些结果使得通过可行的负CO排放技术进一步设计室温下纳米结构碳同素异形体和/或相应金属复合材料的生产成为可能。