PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 22, 2026Langmuir2 citations

A Composite Photocatalytic Material Featuring a Turbine-like Nanocrystalline Array Achieves a “Full-Chain” Enhancement from Light Capture to Light Utilization

View Full Paper
BCBaoliang ChenHFHaohang FangFCFangchao Cheng

Key Points

  • This research aims to improve photocatalytic efficiency by developing a new composite material with enhanced light capture and utilization.
  • Developed Bi2SiO5 nanophotocatalytic materials with turbine-like crystallites through a cellulose-induced assembly strategy.
  • Used nanofibers as templates to control grain size of the photocatalytic material.
  • Created a photothermal-assisted material (MBSOC<L>) by loading long-tube carbon nanotubes onto the surface of MBSO.
  • Conducted degradation tests of RhB and tetracycline solutions to assess efficiency in varied concentrations.
  • Achieved 82.89% degradation of 100 mg/L RhB and 67.02% of 40 mg/L tetracycline using 10 mg of MBSOC<L>.
  • Maintained simultaneous removal efficiencies of 81.33% for RhB and 50.32% for tetracycline in mixed wastewater.
  • Demonstrated a removal efficiency of 99.39% in ultrahigh-concentration RhB wastewater using 0.5 g of MBSOC<L>.

Abstract

The efficiency of traditional photocatalytic technology has been significantly limited by its inadequate light absorption capacity and poor light utilization efficiency, which hinders its application in the wastewater treatment area. This research proposed a cellulose-induced strategy for the ordered assembly of inorganic oxides. The Bi2SiO5 nanophotocatalytic materials (MBSO) with regularly arranged turbine-like crystallites were fabricated successfully, and their grain size was precisely controlled by using nanofibers of varying dimensions as templates. Moreover, a photothermal-assisted photocatalytic material (MBSOCL) was developed by loading single-walled long-tube carbon nanotubes (CNTL) onto the MBSO surface, which achieved simultaneous enhancement across the entire process from light capture to utilization. The surface temperature of MBSOCL rapidly increases to 80.3 °C within 60 min under one sun irradiance. The degradation efficiencies of 100 mg/L RhB solution and 40 mg/L tetracycline TC solution reached 82.89% and 67.02%, respectively, by using only 10 mg of MBSOCL. In complex mixed wastewater containing both RhB and TC, the simultaneous removal efficiencies remained at 81.33% and 50.32%, respectively. Scaling-up experiments demonstrated that 0.5 g of MBSOCL effectively treated 5 g/L ultrahigh-concentration RhB wastewater, achieving a removal efficiency as high as 99.39% and exhibiting excellent tolerance to high pollutant concentrations. This work presents a novel strategy for developing solar-thermal-assisted photocatalysts with enhanced solar energy utilization efficiency, offering an effective solution to water scarcity challenges.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/69bf8692f665edcd009e8e4ehttps://doi.org/10.1021/acs.langmuir.5c06033
Ask AI
Helpful
Bookmark
Share
View Full Paper