Methylbenzyl Naphthalene: Liquid Organic Hydrogen Carrier for Facile Hydrogen Storage and Release

  • Rao, Purna Chandra; 
  • Kim, Yongseok; 
  • Kim, Hyeonsu; 
  • Son, Younghu; 
  • Choi, Yuyeol; 
  • ... Yoon, Minyoung; 
  • 외 1명
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초록

A newhomocyclic methylbenzyl naphthalene (MBN) compoundhas beendeveloped as a novel liquid organic hydrogen carrier (LOHC) mediumwith a high gravimetric hydrogen storage capacity of 6.44 wt % andgood dehydrogenation ability. According to the results of theoreticalcalculations of designed MBN, MBN media possesses one of the lowestdehydrogenation enthalpies (<56 kJ mol(H2) (-1)) among homocyclic LOHC media. The Friedel-Craft alkylationreaction allows the formation of an MBN regioisomeric mixture, whichminimizes the production cost for practical applications. This mixtureexists as a liquid with a high boiling point (>623 K) at ambienttemperature.The H-2 storage efficiency of MBN was optimized to achievea yield of greater than 99% using a new Ru-based catalyst. The reactionmonitoring study suggests the stepwise hydrogenation reaction of aromaticrings, which allows the proposed hydrogenation mechanism. The extractionof H-2 from hydrogen-rich H16-MBN wasconducted via a dehydrogenation reaction (yield > 99%) using aPt/CeO2 catalyst, which enabled fast H-2 release.The fasterand facile dehydrogenation of MBN compared to the other reported homocyclicLOHC media coincides with the theoretical calculation results. A novel homocyclic liquid organic hydrogencarrier basedon methylbenzyl naphthalene isomers is employed as a rechargeablehydrogen storage system.

키워드

Liquid organic hydrogen carrier; hydrogenstorage; homocyclic aromatics; Friedel-Craftsalkylation; Regioisomeric mixture; AROMATIC-HYDROCARBONS; HIGH-CAPACITY; CATALYSTS; DEHYDROGENATION; BENZYL; LOHCS; SUPPORT; ALUMINA; SYSTEMS; PAIR
제목
Methylbenzyl Naphthalene: Liquid Organic Hydrogen Carrier for Facile Hydrogen Storage and Release
저자
Rao, Purna Chandra; Kim, Yongseok; Kim, Hyeonsu; Son, Younghu; Choi, Yuyeol; Na, Kyungsu; Yoon, Minyoung
DOI
10.1021/acssuschemeng.3c02689
발행일
2023-08-08
유형
Article
저널명
ACS Sustainable Chemistry & Engineering
권
11
호
34
페이지
12656 ~ 12666