材料科学
光催化
化学工程
催化作用
X射线光电子能谱
吸收(声学)
傅里叶变换红外光谱
纳米技术
有机化学
化学
工程类
复合材料
作者
Bowen He,Zhongliao Wang,Peng Xiao,Tao Chen,Jiaguo Yu,Liuyang Zhang
标识
DOI:10.1002/adma.202203225
摘要
Abstract Cooperative coupling of photocatalytic H 2 O 2 production with organic synthesis has an expansive perspective in converting solar energy into storable chemical energy. However, traditional powder photocatalysts suffer from severe agglomeration, limited light absorption, poor gas reactant accessibility, and reusable difficulty, which greatly hinders their large‐scale application. Herein, floatable composite photocatalysts are synthesized by immobilizing hydrophobic TiO 2 and Bi 2 O 3 on lightweight polystyrene (PS) spheres via hydrothermal and photodeposition methods. The floatable photocatalysts are not only solar transparent, but also upgrade the contact between reactants and photocatalysts. Thus, the floatable step‐scheme (S‐scheme) TiO 2 /Bi 2 O 3 photocatalyst exhibits a drastically enhanced H 2 O 2 yield of 1.15 m m h −1 and decent furfuryl alcohol conversion to furoic acid synchronously. Furthermore, the S‐scheme mechanism and dynamics are systematically investigated by in situ irradiated X‐ray photoelectron spectroscopy and femtosecond transient absorption spectrum analyses. In situ Fourier transform infrared spectroscopy and density functional theory calculations reveal the mechanism of furoic acid evolution. The ingenious design of floatable photocatalysts not only furnishes insight into maximizing photocatalytic reaction kinetics but also provides a new route for highly efficient heterogeneous catalysis.
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