Review on optofluidic microreactors for artificial photosynthesis

被引:34
作者
Huang, Xiaowen [1 ,2 ,3 ]
Wang, Jianchun [1 ]
Li, Tenghao [2 ,3 ]
Wang, Jianmei [1 ]
Xu, Min [1 ]
Yu, Weixing [4 ]
El Abed, Abdel [5 ]
Zhang, Xuming [2 ,3 ]
机构
[1] Shandong Acad Sci, Energy Res Inst, Jinan 250014, Shandong, Peoples R China
[2] Hong Kong Polytech Univ, Dept Appl Phys, Hong Kong, Peoples R China
[3] Hong Kong Polytech Univ, Shenzhen Res Inst, Shenzhen 518057, Peoples R China
[4] Chinese Acad Sci, Xian Inst Opt & Precis Mech, Key Lab Spectral Imaging Technol, Xian 710119, Shaanxi, Peoples R China
[5] Univ Paris Saclay, Lab Photon Quant & Mol, UMR 8537, Ecole Normale Super Cachan,Cent Supelec,CNRS, 61 Ave President Wilson, F-94235 Cachan, France
基金
中国国家自然科学基金;
关键词
artificial photosynthesis; carbon dioxide fixation; coenzyme regeneration; microfluidics; optofluidics; water splitting; PHOTOCATALYTIC CO2 REDUCTION; METAL-ORGANIC FRAMEWORKS; VISIBLE-LIGHT; CARBON-DIOXIDE; HYDROGEN EVOLUTION; ENVIRONMENTAL REMEDIATION; MEMBRANE MICROREACTOR; ELECTRON-TRANSFER; ENERGY-TRANSFER; SOLAR FUELS;
D O I
10.3762/bjnano.9.5
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Artificial photosynthesis (APS) mimics natural photosynthesis (NPS) to store solar energy in chemical compounds for applications such as water splitting, CO2 fixation and coenzyme regeneration. NPS is naturally an optofluidic system since the cells (typical size 10 to 100 mu m) of green plants, algae, and cyanobacteria enable light capture, biochemical and enzymatic reactions and the related material transport in a microscale, aqueous environment. The long history of evolution has equipped NPS with the remarkable merits of a large surface-area-to-volume ratio, fast small molecule diffusion and precise control of mass transfer. APS is expected to share many of the same advantages of NPS and could even provide more functionality if optofluidic technology is introduced. Recently, many studies have reported on optofluidic APS systems, but there is still a lack of an in-depth review. This article will start with a brief introduction of the physical mechanisms and will then review recent progresses in water splitting, CO2 fixation and coenzyme regeneration in optofluidic APS systems, followed by discussions on pending problems for real applications.
引用
收藏
页码:30 / 41
页数:12
相关论文
共 121 条
[1]   Redox mediated photocatalytic water-splitting in optofluidic microreactors [J].
Ahsan, Syed Saad ;
Gumus, Abdurrahman ;
Erickson, David .
LAB ON A CHIP, 2013, 13 (03) :409-414
[2]   Photobiocatalysis: The Power of Combining Photocatalysis and Enzymes [J].
Antonio Macia-Agullo, Juan ;
Corma, Avelino ;
Garcia, Hermenegildo .
CHEMISTRY-A EUROPEAN JOURNAL, 2015, 21 (31) :10940-10959
[3]   Visible-Light Photocatalytic Conversion of Carbon Dioxide into Methane Using Cu2O/TiO2 Hollow Nanospheres [J].
Bi, Feng ;
Ehsan, Muhammad Fahad ;
Liu, Wei ;
He, Tao .
CHINESE JOURNAL OF CHEMISTRY, 2015, 33 (01) :112-118
[4]   Comparing Photosynthetic and Photovoltaic Efficiencies and Recognizing the Potential for Improvement [J].
Blankenship, Robert E. ;
Tiede, David M. ;
Barber, James ;
Brudvig, Gary W. ;
Fleming, Graham ;
Ghirardi, Maria ;
Gunner, M. R. ;
Junge, Wolfgang ;
Kramer, David M. ;
Melis, Anastasios ;
Moore, Thomas A. ;
Moser, Christopher C. ;
Nocera, Daniel G. ;
Nozik, Arthur J. ;
Ort, Donald R. ;
Parson, William W. ;
Prince, Roger C. ;
Sayre, Richard T. .
SCIENCE, 2011, 332 (6031) :805-809
[5]   Selective and Efficient Photocatalytic CO2 Reduction to CO Using Visible Light and an Iron-Based Homogeneous Catalyst [J].
Bonin, Julien ;
Robert, Marc ;
Routier, Mathilde .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2014, 136 (48) :16768-16771
[6]   A Molecular Surface Functionalization Approach to Tuning Nanoparticle Electrocatalysts for Carbon Dioxide Reduction [J].
Cao, Zhi ;
Kim, Dohyung ;
Hong, Dachao ;
Yu, Yi ;
Xu, Jun ;
Lin, Song ;
Wen, Xiaodong ;
Nichols, Eva M. ;
Jeong, Keunhong ;
Reimer, Jeffrey A. ;
Yang, Peidong ;
Chang, Christopher J. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2016, 138 (26) :8120-8125
[7]   Multiphoton imaging to identify grana, stroma thylakoid, and starch inside an intact leaf [J].
Chen, Mei-Yu ;
Zhuo, Guan-Yu ;
Chen, Kuan-Chieh ;
Wu, Pei-Chun ;
Hsieh, Tsung-Yuan ;
Liu, Tzu-Ming ;
Chu, Shi-Wei .
BMC PLANT BIOLOGY, 2014, 14
[8]   High-performance optofluidic membrane microreactor with a mesoporous CdS/TiO2/SBA-15@carbon paper composite membrane for the CO2 photoreduction [J].
Chen, Rong ;
Cheng, Xiao ;
Zhu, Xun ;
Liao, Qiang ;
An, Liang ;
Ye, Dingding ;
He, Xuefeng ;
Wang, Zhibin .
CHEMICAL ENGINEERING JOURNAL, 2017, 316 :911-918
[9]   Highly-durable optofluidic microreactor for photocatalytic water splitting [J].
Chen, Rong ;
Li, Lin ;
Zhu, Xun ;
Wang, Hong ;
Liao, Qiang ;
Zhang, Mu-Xing .
ENERGY, 2015, 83 :797-804
[10]   Photocatalytic fixation of nitrogen to ammonia: state-of-the-art advancements and future prospects [J].
Chen, Xingzhu ;
Li, Neng ;
Kong, Zhouzhou ;
Ong, Wee-Jun ;
Zhao, Xiujian .
MATERIALS HORIZONS, 2018, 5 (01) :9-27