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将钯纳米粒子锚定在二硫代氨基甲酸盐功能化的 SBA-15 上,用于从甲酸中生成氢气。

Anchoring Pd-nanoparticles on dithiocarbamate- functionalized SBA-15 for hydrogen generation from formic acid.

机构信息

Organic and Nano Group (ONG), Department of Chemistry, Faculty of Science, University of Maragheh, PO BOX, 55181-83111, Maragheh, Iran.

Organic and Nano Group (ONG), Department of Chemistry, Iran University of Science and Technology (IUST), PO Box, 16846-13114, Tehran, Iran.

出版信息

Sci Rep. 2020 Oct 23;10(1):18188. doi: 10.1038/s41598-020-75369-y.

Abstract

Hydrogen (H) generation from natural biological metabolic products has remained a huge challenge for the energy arena. However, designing a catalytic system with complementary properties including high surface area, high loading, and easy separation offers a promising route for efficient utilization of nanoreactors for prospective H suppliers to a fuel cell. Herein, selective dehydrogenation of formic acid (FA) as a natural biological metabolic product to H and CO gas mixtures has been studied by supporting ultrafine palladium nanoparticles on organosulfur-functionalized SBA-15 nanoreactor under ultrasonic irradiation. The effects of the porous structure as a nanoreactor, and organosulfur groups, which presented around the Pd due to their prominent roles in anchoring and stabilizing of Pd NPs, studied as a superior catalyst for selective dehydrogenation of FA. Whole catalytic systems were utilized in ultrasonic irradiation in the absence of additives to provide excellent TOF/TON values. It was found that propose catalyst is a greener, recyclable, and more suitable option for the large-scale application and provide some new insights into stabilization of ultra-fine metal nanoparticle for a variety of applications.

摘要

从天然生物代谢产物中产生氢气(H)一直是能源领域的巨大挑战。然而,设计具有互补特性的催化体系,包括高表面积、高负载和易于分离,为高效利用纳米反应器提供了一条有前途的途径,有望将纳米反应器作为燃料 电池的潜在 H 供应源。在此,通过在超声辐射下将超细钯纳米颗粒负载在有机硫功能化 SBA-15 纳米反应器上,研究了作为天然生物代谢产物的甲酸(FA)的选择性脱氢反应,生成 H 和 CO 混合气体。研究了多孔结构作为纳米反应器的作用,以及有机硫基团的作用,由于它们在锚定和稳定 Pd NPs 方面的突出作用,这些基团在 Pd 周围呈现,作为 FA 选择性脱氢的优异催化剂。整个催化体系在没有添加剂的超声辐射下被利用,以提供优异的 TOF/TON 值。结果表明,所提出的催化剂是一种更环保、可回收的、更适合大规模应用的选择,并为各种应用中超细金属纳米颗粒的稳定提供了一些新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbde/7584604/91c46125664f/41598_2020_75369_Fig1_HTML.jpg

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