Hydrophilic Photocrosslinkers as a Universal Solution to Endow Water Affinity to a Polymer Photocatalyst for an Enhanced Hydrogen Evolution Rate

  • An, Sanghyeok; 
  • Jeong, Kyeong-Jun; 
  • Hassan, Syed Zahid; 
  • Ham, Gayoung; 
  • Kang, Seonghyeon; 
  • ... Cha, Hyojung; 
  • 외 9명
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14
Citations

SCOPUS

15

초록

A universal approach for enhancing water affinity in polymer photocatalysts by covalently attaching hydrophilic photocrosslinkers to polymer chains is presented. A series of bisdiazirine photocrosslinkers, each comprising bisdiazirine photophores linked by various aliphatic (CL-R) or ethylene glycol-based bridge chains (CL-TEG), is designed to prevent crosslinked polymer photocatalysts from degradation through a safe and efficient photocrosslinking reaction at a wavelength of 365 nm. When employing the hydrophilic CL-TEG as a photocrosslinker with polymer photocatalysts (F8BT), the hydrogen evolution reaction (HER) rate is considerably enhanced by 2.5-fold compared to that obtained using non-crosslinked F8BT photocatalysts, whereas CL-R-based photocatalysts yield HER rates comparable to those of non-crosslinked counterparts. Photophysical analyses including time-resolved photoluminescence and transient absorption measurements reveal that adding CL-TEG accelerates exciton separation, forming long-lived charge carriers. Additionally, the in-depth study using molecular dynamics simulations elucidates the dual role of CL-TEG: it enhances water penetration into the polymer matrix and stabilizes charge carriers after exciton generation against undesirable recombination. Therefore, the strategy highlights endowing a high-permittivity environment within polymer photocatalyst in a controlled manner is crucial for enhancing photocatalytic redox reactivity. Furthermore, this study shows that this hydrophilic crosslinker approach has a broad applicability in general polymer semiconductors and their nanoparticulate photocatalysts. In this work, a universal strategy is proposed to impart water affinity to common organic photocatalysts by forming 3D hydrophilic crosslinking structures between polymer-semiconductor chains using hydrophilic photocrosslinking agents. This enables organic photocatalysts to have a high permeability environment in a controlled manner, which is found to be crucial for enhancing photocatalytic redox reactivity. image

키워드

charge carrier stabilization; exciton dynamics; hydrogen evolution; hydrophilic photocrosslinkers; molecular dynamics simulations; photocatalytic performance; polymer photocatalysts; MESSENGER-RNA VACCINES; TUMOR GENE WT1; BACTERIA; RESPONSES; PRODUCT; DESIGN; CELLS; LIGHT
제목
Hydrophilic Photocrosslinkers as a Universal Solution to Endow Water Affinity to a Polymer Photocatalyst for an Enhanced Hydrogen Evolution Rate
저자
An, Sanghyeok; Jeong, Kyeong-Jun; Hassan, Syed Zahid; Ham, Gayoung; Kang, Seonghyeon; Lee, Juhyeok; Ma, Hyeonjong; Kwon, Jieun; Jeong, Sang Young; Yang, Jiwoong; Woo, Han Young; Cho, Han-Hee; Cha, Hyojung; Son, Chang Yun; Chung, Dae Sung
DOI
10.1002/advs.202309786
발행일
2024-07
유형
Article
저널명
Advanced Science
권
11
호
28