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University of Houston

Bismuth Oxyhalide Nanosheets with Adjustable Band Edge Potentials for Photocatalytic Ammonia Generation

Abstract

dc:description.abstract

Ammonia is a crucial compound and precursor in industry and agriculture. It can be easily liquified and transported. Thus, it could be an exciting way to store intermittent renewable energies. However, the current industrial process is energy demanding and polluting. Recently, photocatalytic nitrogen fixation for ammonia generation attracted much attention to be a promising and sustainable alternative to the traditional Haber-Bosch process. Although many proposed photocatalysts are shown to work for ammonia generation, there are still several challenges to achieving high production rates and energy conversion efficiency. Among the studied photocatalysts, bismuth iodide (BiOI) showed promising properties such as visible light absorption capability, adjustable band edge potentials, and abundant surface oxygen vacancies to activate nitrogen molecules. In the third chapter, we fabricated ultrathin BiOI nanosheets by a surfactant-assisted hydrothermal method. Unlike bulk BiOI, ultrathin nanosheets were active for water splitting and nitrogen reduction. It is shown that functional groups (polyvinyl pyrrolidone) on the surface of BiOI induced an electric dipole and upshifted the band edge potentials. Therefore, enhancing redox overpotential, reducing the particle size, and generating a significant amount of oxygen vacancies could enable the photocatalyst to efficiently reduce nitrogen to ammonia in pure water. Another challenge toward efficient ammonia generation is providing a sufficient number of electrons and protons from the water oxidation half-reaction. However, almost all previous studies focused solely on nitrogen reduction reaction, and its counterpart (OER) was neglected. In chapter 4, a new strategy was employed to eliminate the need for using organic sacrificial reagents for ammonia generation. We proposed using cobalt oxyhydroxide (CoOOH) as an OER co-catalyst for a well-known nitrogen reduction photocatalyst, bismuth oxychloride (BiOCl). A series of cobalt-doped BiOCl (Co-BiOCl) nano-platelets were synthesized through a combination of co-precipitation and hydrothermal synthesis with systematic variation in the percentage of added co-catalyst. The formation of CoOOH was verified via X-ray diffraction, X-ray photoelectron spectroscopy, electron microscopy, Raman, and infrared spectroscopy. A 4.6-fold improvement in the ammonia production rate was realized with 5% Co-BiOCl. The OER performed and correlated well with the ammonia generation. Consequently, improving water oxidation by loading OER co-catalyst points to a promising and applicable method for better N2 fixation photocatalyst design.

Degree

thesis:*
Name thesis:degree_name
Doctor of Philosophy
Level thesis:degree_level
Doctoral
Discipline thesis:degree_discipline
Materials Engineering
Grantor
University of Houston
Year dc:date.issued
2022

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Mohebinia, Mohammadjavad
Advisor dc:contributor.advisor
  • Bao, Jiming
Committee members dc:contributor.committeemember
  • Ren, Zhifeng
  • Grabow, Lars C.
  • Shan, Xiaonan
  • Ryou, Jae-Hyun

Subjects

dc:subject × 3

Rights

dc:rights
Statement dc:rights
  • The author of this work is the copyright owner. UH Libraries and the Texas Digital Library have their permission to store and provide access to this work. UH Libraries has secured permission to reproduce any and all previously published materials contained in the work. Further transmission, reproduction, or presentation of this work is prohibited except with permission of the author(s).
Language dc:language.iso
eng

Identifiers

dc:identifier.*
Handle dc:identifier.uri
https://hdl.handle.net/10657/14406
OAI identifier oai:identifier
oai:uh-ir.tdl.org:10657/14406

Chain of custody

source
Harvested from
University of Houston
Base URL
uh-ir.tdl.org/server/oai/request
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Mohebinia, Mohammadjavad. Bismuth Oxyhalide Nanosheets with Adjustable Band Edge Potentials for Photocatalytic Ammonia Generation. Doctoral thesis, University of Houston, 2022. https://hdl.handle.net/10657/14406