基本信息

杨晓辉 男 硕导 中国科学院重庆绿色智能技术研究院
电子邮件: yangxiaohui@cigit.ac.cn
通信地址: 重庆市北碚区方正大道266号
邮政编码: 400714
研究领域
环境电化学污水处理与资源化
招生信息
招生要求:态度端正,有上进心,热爱科研,工作勤奋。具有良好的沟通能力,善于执行并拥有团队合作精神。具备一定的英文文献阅读和写作能力。
招生专业
083002-环境工程
083001-环境科学
083001-环境科学
招生方向
低碳水处理技术与资源化,环境电化学功能材料,电化学催化原理
教育背景
2017-09--2020-12 重庆大学 博士学位
2015-09--2017-07 哈尔滨工业大学 硕士学位
2015-09--2017-07 哈尔滨工业大学 硕士学位
学历
研究生
学位
博士
工作经历
工作简历
2024-01~现在, 中国科学院重庆绿色智能技术研究院, 副研究员
2021-01~2023-12,中国科学院重庆绿色智能技术研究院, 助理研究员
2021-01~2023-06,中国科学院重庆绿色智能技术研究院, 博士后研究员
2021-01~2023-12,中国科学院重庆绿色智能技术研究院, 助理研究员
2021-01~2023-06,中国科学院重庆绿色智能技术研究院, 博士后研究员
社会兼职
2023-12-31-今,《Tungsten 》期刊, 青年编委
专利与奖励
专利成果
( 1 ) 一种电化学硝酸盐转化合成氨催化剂及其制备方法, 发明专利, 2022, 第 3 作者, 专利号: CN115505963A
出版信息
发表论文
(1) MOF-on-MOF-derived CuO@In2O3 s-scheme heterojunction with core–shell structure for efficient photocatalytic CO2 reduction, Chem. Eng. J., 2024, 通讯作者
(2) Numerous active sites in self-supporting Co3O4 nanobelt array for boosted and stabilized 5-hydroxymethylfurfural electro-oxidation, Appl. Catal. A Gen., 2024, 通讯作者
(3) Directional movement of electron induced by interfacial coupling in CuS@NiCo-LDHs for efficient alkaline oxygen evolution reaction, Appl. Surf. Sci., 2024, 通讯作者
(4) Sublayer-Sulfur-Vacancy-Induced Charge Redistribution of FeCuS Nanoflower Awakening Alkaline Hydrogen Evolution, Inorg. Chem., 2024, 通讯作者
(5) Antagonism effect of residual S triggers the dual-path mechanism for water oxidation, J. Energy Chem., 2024, 通讯作者
(6) B and N Co-Doped Wood Scrap Charcoal for Decorated Supercapacitor with High Conductivity, Forests, 2023, 通讯作者
(7) Regulating dynamic equilibrium of active hydrogen for super-efficient nitrate electroreduction to ammonia, Chem. Eng. J., 2023, 通讯作者
(8) Sequential active-site switches in integrated Cu/Fe-TiO2 for efficient electroreduction from nitrate into ammonia, APPLIED CATALYSIS B-ENVIRONMENTAL, 2023, 第 1 作者
(9) W Modification of Nickel-Rich Ternary Cathode Material for Efficient Lithium-Ion Batteries, J. Electrochem. Soc., 2023, 通讯作者
(10) New pentlandite-like oxide semiconductors IrIn6XYO8 (X = Ga, In; Y = Ge, Sn, Ti) as potential candidates for photocatalytic water splitting under visible-light irradiation, J. Mater. Chem. C, 2023, 第 1 作者
(11) First-Principles Calculations on Narrow-Band Gap d10 Metal Oxides for Photocatalytic H2 Production: Role of Unusual In2+ Cations in Band Engineering, Inorg. Chem., 2023, 通讯作者
(12) Sequential active-site switches in integrated Cu/Fe-TiO2 for efficient electroreduction from nitrate into ammonia, Appl. Catal. B: Environ., 2023, 第 1 作者
(13) In-situ confined construction of N-doped compact bamboo charcoal composites for supercapacitors, J. Energy Storage, 2023, 通讯作者
(14) Cold plasma-activated Cu-Co catalysts with CN vacancies for enhancing CO2 electroreduction to low-carbon alcohol, J. Energy Chem., 2023, 通讯作者
(15) Fe and Cu Double-Doped Co3O4 Nanorod with Abundant Oxygen Vacancies: A High-Rate Electrocatalyst for Tandem Electroreduction of Nitrate to Ammonia, Inorg. Chem., 2023, 通讯作者
(16) In situ modification of d-band in core-shell structure for efficient hydrogen storage via electrocatalytic N2 fixation, Chem. Sci., 2022, 第 1 作者
(17) A porous heterostructure catalyst for oxygen evolution: synergy between IrP2 nanocrystals and ultrathin P,N-codoped carbon nanosheets, Nanotechnology, 2021, 第 1 作者
(18) Low-coordinate step atoms via plasma-assisted calcinations to enhance electrochemical reduction of nitrogen to ammonia, Small, 2020, 第 1 作者
(19) Insights into the role of cation vacancy for significantly enhanced electrochemical nitrogen reduction, Appl. Catal. B: Environ., 2020, 第 1 作者
(20) Mesoporous silica beads containing active and stable tin species for the Baeyer-Villiger oxidations of cyclic ketones, Micropor. Mesopor. Mater., 2017, 第 1 作者
(2) Numerous active sites in self-supporting Co3O4 nanobelt array for boosted and stabilized 5-hydroxymethylfurfural electro-oxidation, Appl. Catal. A Gen., 2024, 通讯作者
(3) Directional movement of electron induced by interfacial coupling in CuS@NiCo-LDHs for efficient alkaline oxygen evolution reaction, Appl. Surf. Sci., 2024, 通讯作者
(4) Sublayer-Sulfur-Vacancy-Induced Charge Redistribution of FeCuS Nanoflower Awakening Alkaline Hydrogen Evolution, Inorg. Chem., 2024, 通讯作者
(5) Antagonism effect of residual S triggers the dual-path mechanism for water oxidation, J. Energy Chem., 2024, 通讯作者
(6) B and N Co-Doped Wood Scrap Charcoal for Decorated Supercapacitor with High Conductivity, Forests, 2023, 通讯作者
(7) Regulating dynamic equilibrium of active hydrogen for super-efficient nitrate electroreduction to ammonia, Chem. Eng. J., 2023, 通讯作者
(8) Sequential active-site switches in integrated Cu/Fe-TiO2 for efficient electroreduction from nitrate into ammonia, APPLIED CATALYSIS B-ENVIRONMENTAL, 2023, 第 1 作者
(9) W Modification of Nickel-Rich Ternary Cathode Material for Efficient Lithium-Ion Batteries, J. Electrochem. Soc., 2023, 通讯作者
(10) New pentlandite-like oxide semiconductors IrIn6XYO8 (X = Ga, In; Y = Ge, Sn, Ti) as potential candidates for photocatalytic water splitting under visible-light irradiation, J. Mater. Chem. C, 2023, 第 1 作者
(11) First-Principles Calculations on Narrow-Band Gap d10 Metal Oxides for Photocatalytic H2 Production: Role of Unusual In2+ Cations in Band Engineering, Inorg. Chem., 2023, 通讯作者
(12) Sequential active-site switches in integrated Cu/Fe-TiO2 for efficient electroreduction from nitrate into ammonia, Appl. Catal. B: Environ., 2023, 第 1 作者
(13) In-situ confined construction of N-doped compact bamboo charcoal composites for supercapacitors, J. Energy Storage, 2023, 通讯作者
(14) Cold plasma-activated Cu-Co catalysts with CN vacancies for enhancing CO2 electroreduction to low-carbon alcohol, J. Energy Chem., 2023, 通讯作者
(15) Fe and Cu Double-Doped Co3O4 Nanorod with Abundant Oxygen Vacancies: A High-Rate Electrocatalyst for Tandem Electroreduction of Nitrate to Ammonia, Inorg. Chem., 2023, 通讯作者
(16) In situ modification of d-band in core-shell structure for efficient hydrogen storage via electrocatalytic N2 fixation, Chem. Sci., 2022, 第 1 作者
(17) A porous heterostructure catalyst for oxygen evolution: synergy between IrP2 nanocrystals and ultrathin P,N-codoped carbon nanosheets, Nanotechnology, 2021, 第 1 作者
(18) Low-coordinate step atoms via plasma-assisted calcinations to enhance electrochemical reduction of nitrogen to ammonia, Small, 2020, 第 1 作者
(19) Insights into the role of cation vacancy for significantly enhanced electrochemical nitrogen reduction, Appl. Catal. B: Environ., 2020, 第 1 作者
(20) Mesoporous silica beads containing active and stable tin species for the Baeyer-Villiger oxidations of cyclic ketones, Micropor. Mesopor. Mater., 2017, 第 1 作者
科研活动
科研项目
( 1 ) 高浓度硝酸盐污水C-N电化学偶联制尿素及机制研究, 负责人, 国家任务, 2022-01--2024-12
( 2 ) 富/缺电子 Cu 中心的设计构建及污水硝酸盐电化学制氨的定向机制研究, 负责人, 国家任务, 2022-01--2023-06
( 3 ) 污水硝酸盐与烟道气 CO2的电化学共还原偶联机制研究, 负责人, 中国科学院计划, 2022-01--2023-12
( 4 ) 基于质子转移的污水硝酸盐电化学定向脱氮作用机制研究, 负责人, 地方任务, 2021-10--2023-09
( 5 ) “双碳”约束下环境工程学科发展战略研究, 参与, 国家任务, 2022-01--2022-12
( 6 ) 工业废水处理过程的电子流动力学及智能化调控原理与方法, 参与, 国家任务, 2022-01--2026-12
( 7 ) 微生物电极过程动力学试验仪, 参与, 国家任务, 2024-01--2028-12
( 8 ) 废水NO3-电化学转化的活性氢动态机制研究, 负责人, 地方任务, 2024-04--2027-04
( 2 ) 富/缺电子 Cu 中心的设计构建及污水硝酸盐电化学制氨的定向机制研究, 负责人, 国家任务, 2022-01--2023-06
( 3 ) 污水硝酸盐与烟道气 CO2的电化学共还原偶联机制研究, 负责人, 中国科学院计划, 2022-01--2023-12
( 4 ) 基于质子转移的污水硝酸盐电化学定向脱氮作用机制研究, 负责人, 地方任务, 2021-10--2023-09
( 5 ) “双碳”约束下环境工程学科发展战略研究, 参与, 国家任务, 2022-01--2022-12
( 6 ) 工业废水处理过程的电子流动力学及智能化调控原理与方法, 参与, 国家任务, 2022-01--2026-12
( 7 ) 微生物电极过程动力学试验仪, 参与, 国家任务, 2024-01--2028-12
( 8 ) 废水NO3-电化学转化的活性氢动态机制研究, 负责人, 地方任务, 2024-04--2027-04