Acta Physico-Chimica Sinica ›› 2020, Vol. 36 ›› Issue (1): 1904066.doi: 10.3866/PKU.WHXB201904066
Special Issue: Special Issue in Honor of Academician Youqi Tang on the Occasion of His 100th Birthday
Previous Articles Next Articles
Jiequn Wu,Weiming Hua,Yinghong Yue*(
),Zi Gao
Received:2019-04-17
Accepted:2019-05-22
Published:2019-05-24
Contact:
Yinghong Yue
E-mail:yhyue@fudan.edu.cn
Supported by:Jiequn Wu, Weiming Hua, Yinghong Yue, Zi Gao. Swelling Characteristics of g-C3N4 as Base Catalyst in Liquid-Phase Reaction[J]. Acta Physico-Chimica Sinica 2020, 36(1), 1904066. doi: 10.3866/PKU.WHXB201904066
| 1 |
Tanabe K. ; Holderich W. F. Appl. Catal. A 1999, 181, 399.
doi: 10.1016/S0926-860X(98)00397-4 |
| 2 |
Davis R. J. J. Catal. 2003, 216, 396.
doi: 10.1016/S0021-9517(02)00034-9 |
| 3 |
Blaser H. U. Catal. Today 2000, 60, 161.
doi: 10.1016/S0920-5861(00)00332-1 |
| 4 |
Kelly G. J. ; King F. ; Kett M. Green Chem. 2002, 4, 392.
doi: 10.1039/B201982P |
| 5 |
Wight A. P. ; Davis M. E. Chem. Rev. 2002, 102, 3589.
doi: 10.1021/cr010334m |
| 6 |
Diaz U. ; Garcia T. ; Velty A. ; Corma A. J. Mater. Chem. 2009, 19, 5970.
doi: 10.1039/B906821J |
| 7 |
Climent M. J. ; Corma A. ; Iborra S. ; Velty A. J. Catal. 2004, 221, 474.
doi: 10.1016/j.jcat.2003.09.012 |
| 8 |
Sebti S. ; Solhy A. ; Tahir R. ; Smahi A. Appl. Catal. A-Gen. 2002, 235, 273.
doi: 10.1016/S0926-860X(02)00273-9 |
| 9 |
Liu Z. ; Cortes-Concepcion J. A. ; Mustian M. ; Amiridis M. D. Appl. Catal. A-Gen. 2006, 302, 232.
doi: 10.1016/j.apcata.2006.01.007 |
| 10 |
Wang X. G. ; Tseng Y. H. ; Chan J. C. C. ; Cheng S. F. J. Catal. 2005, 233, 266.
doi: 10.1016/j.jcat.2005.04.007 |
| 11 |
Goa Y. ; Wu P. ; Tatsumi T. J. Catal. 2004, 224, 107.
doi: 10.1016/j.jcat.2004.01.021 |
| 12 |
Wang X. ; Maeda K. ; Thomas A. ; Takanabe K. ; Xin G. ; Carlsson J. M. ; Domen K. ; Antonietti M. Nat. Mater. 2009, 8, 76.
doi: 10.1038/nmat2317 |
| 13 |
Wang Y. ; Wang X. C. ; Antonietti M. Angew. Chem. Int. Ed. 2012, 51, 68.
doi: 10.1002/anie.201101182 |
| 14 |
Praus P. ; Svoboda L. ; Ritz M. ; Troppova I. ; Sihor M. ; Koci K. Mater. Chem. Phys. 2017, 193, 438.
doi: 10.1016/j.matchemphys.2017.03.008 |
| 15 |
Chi S. H. ; Ji C. N. ; Sun S. W. ; Jiang H. ; Qu R. J. ; Sun C. M. Ind. Eng. Chem. Res. 2016, 55, 12060.
doi: 10.1021/acs.iecr.6b02178 |
| 16 |
Zhang G. G. ; Zhang J. S. ; Zhang M. W. ; Wang X. C. J. Mater. Chem. 2012, 22, 8083.
doi: 10.1039/C2JM00097K |
| 17 |
Zhai H. S. ; Cao L. ; Xia X. H. Chin. Chem. Lett. 2013, 24, 103.
doi: 10.1016/j.cclet.2013.01.030 |
| 18 |
Yew Y. T. ; Lim C. S. ; Eng A. Y. S. ; Oh J. ; Park S. ; Pumera M. ChemPhysChem 2016, 17, 481.
doi: 10.1002/cphc.201501009 |
| 19 |
Datta K. K. R. ; Reddy B. V. S. ; Ariga K. ; Vinu A. Angew. Chem. Int. Ed. 2010, 49, 5961.
doi: 10.1002/anie.201001699 |
| 20 |
Wang Y. ; Yao J. ; Li H. ; Su D. ; Antonietti M. J. Am. Chem. Soc. 2011, 133, 2362.
doi: 10.1021/ja109856y |
| 21 |
Goettmann F. ; Fischer A. ; Antonietti M. ; Thomas A. Angew. Chem. Int. Ed. 2006, 45, 4467.
doi: 10.1002/anie.200600412 |
| 22 |
Ansari M. B. ; Min B. H. ; Mo Y. H. ; Park S. E. Green Chem. 2011, 13, 1416.
doi: 10.1039/C0GC00951B |
| 23 |
Zhang L. ; Wang H. ; Shen W. Z. ; Qin Z. F. ; Wang J. G. ; Fan W. B. J. Catal. 2016, 344, 293.
doi: 10.1016/j.jact.2016.09.023 |
| 24 |
Su F. Z. ; Antoniettia M. ; Wang X. C. Catal. Sci. Technol. 2012, 2, 1005.
doi: 10.1039/C2CY00012A |
| 25 |
Xu J. ; Wang Y. ; Shang J. K. ; Jiang Q. ; Li Y. X. Catal. Sci. Technol. 2016, 6, 4192.
doi: 10.1039/C5CY01747E |
| 26 |
Yan S. C. ; Li Z. S. ; Zou Z. G. Langmuir 2009, 25, 10397.
doi: 10.1021/la900923z |
| 27 |
Kawaguchi M. ; Nozaki K. Chem. Mater. 1995, 7, 257.
doi: 10.1021/cm00050a005 |
| 28 |
Thomas A. ; Fischer A. ; Goettmann F. ; Antonietti M. ; Muller J. O. ; Schlogl R. ; Carlsson J. M. J. Mater. Chem. 2008, 18, 4893.
doi: 10.1039/B800274F |
| 29 |
Kauffman K. L. ; Culp J. T. ; Goodman A. ; Matranga C. J. Phys. Chem. C. 2011, 115, 1857.
doi: 10.1021/jp102273w |
| 30 |
Komatsu T. ; Nakamura T. J. Mater. Chem. 2001, 11, 474.
doi: 10.1039/B005982J |
| 31 |
Wang X. C. ; Chen X. F. ; Thomas A. ; Fu X. Z. ; Antonietti M. Adv. Mater. 2009, 21, 1609.
doi: 10.1002/adma.200802627 |
| 32 |
Pinero E. R. ; Amoros D. C. ; Solano A. L. ; Find J. ; Wild U. ; Schlogl R. Carbon 2002, 40, 597.
doi: 10.1016/S0008-6223(01)00155-5 |
| 33 |
Cui Y. J. ; Zhang J. S. ; Zhang G. G. ; Huang J. H. ; Liu P. ; Antonietti M. ; Wang X. C. J. Mater. Chem. 2011, 21, 13032.
doi: 10.1039/C1JM11961C |
| 34 |
Yan H. J. ; Chen Y. ; Xu S. M. Int. J. Hydrog. Energy 2012, 37, 125.
doi: 10.1016/j.ijhydene.2011.09.072 |
| 35 |
Wang Y. ; Zhuang J. Q. ; Yang G. ; Zhou D. H. ; Ma D. ; Han X. W. ; Bao X. H. J. Phys. Chem. B 2004, 108, 1386.
doi: 10.1021/jp034989y |
| 36 |
Rodriguez I. ; Sastre G. ; Corma A. ; Iborra S. J. Catal. 1999, 183, 14.
doi: 10.1006/jcat.1998.2380 |
| 37 |
Li G. W. ; Xiao J. ; Zhang W. Q. Green Chem. 2011, 13, 1828.
doi: 10.1039/C0GC00877J |
| 38 |
Burgoyne A. R. ; Meijboom R. Catal. Lett. 2013, 143, 563.
doi: 10.1007/s10562-013-0995-5 |
| 39 |
Mo X. H. ; López D. E. ; Suwannakarn K. ; Liu Y. J. ; Lotero E. ; Goodwin J. G., Jr. ; Lu C. Q. J. Catal. 2008, 254, 332.
doi: 10.1016/j.jcat.2008.01.011 |
| [1] | Hui Wang, Abdelkader Labidi, Menghan Ren, Feroz Shaik, Chuanyi Wang. Recent Progress of Microstructure-Regulated g-C3N4 in Photocatalytic NO Conversion: The Pivotal Roles of Adsorption/Activation Sites [J]. Acta Phys. -Chim. Sin., 2025, 41(5): 100039-. |
| [2] | Jiayao Wang, Guixu Pan, Ning Wang, Shihan Wang, Yaolin Zhu, Yunfeng Li. Preparation of donor-π-acceptor type graphitic carbon nitride photocatalytic systems via molecular level regulation for high-efficient H2O2 production [J]. Acta Phys. -Chim. Sin., 2025, 41(12): 100168-. |
| [3] | Haitao Wang, Lianglang Yu, Jizhou Jiang, Arramel, Jing Zou. S-Doping of the N-Sites of g-C3N4 to Enhance Photocatalytic H2 Evolution Activity [J]. Acta Phys. -Chim. Sin., 2024, 40(5): 2305047-. |
| [4] | Jianyu Qin, Yuejiao An, Yanfeng Zhang. In Situ Assembled ZnWO4/g-C3N4 S-Scheme Heterojunction with Nitrogen Defect for CO2 Photoreduction [J]. Acta Phys. -Chim. Sin., 2024, 40(12): 2408002-. |
| [5] | Xuejiao Wang, Suiying Dong, Kezhen Qi, Vadim Popkov, Xianglin Xiang. Photocatalytic CO2 Reduction by Modified g-C3N4 [J]. Acta Phys. -Chim. Sin., 2024, 40(12): 2408005-. |
| [6] | Heng Chen, Longhui Nie, Kai Xu, Yiqiong Yang, Caihong Fang. Remarkable Photocatalytic H2O2 Production Efficiency over Ultrathin g-C3N4 Nanosheet with Large Surface Area and Enhanced Crystallinity by Two-Step Calcination [J]. Acta Phys. -Chim. Sin., 2024, 40(11): 2406019-. |
| [7] | Guoqiang Chen, Zixuan Zheng, Wei Zhong, Guohong Wang, Xinhe Wu. Molten Intermediate Transportation-Oriented Synthesis of Amino-Rich g-C3N4 Nanosheets for Efficient Photocatalytic H2O2 Production [J]. Acta Phys. -Chim. Sin., 2024, 40(11): 2406021-. |
| [8] | Na Lu, Xuedong Jing, Yao Xu, Wei Lu, Kuichao Liu, Zhenyi Zhang. Effective Cascade Modulation of Charge-Carrier Kinetics in the Well-Designed Multi-Component Nanofiber System for Highly-Efficient Photocatalytic Hydrogen Generation [J]. Acta Phys. -Chim. Sin., 2023, 39(4): 2207045-0. |
| [9] | Fangxin Yin, Pinquan Qin, Jingsan Xu, Shaowen Cao. Methylene Blue Incorporated Donor-Acceptor g-C3N4 Nanosheet Photocatalyst for H2 Production [J]. Acta Phys. -Chim. Sin., 2023, 39(11): 2212062-. |
| [10] | Zhuonan Lei, Xinyi Ma, Xiaoyun Hu, Jun Fan, Enzhou Liu. Enhancement of Photocatalytic H2-Evolution Kinetics through the Dual Cocatalyst Activity of Ni2P-NiS-Decorated g-C3N4 Heterojunctions [J]. Acta Phys. -Chim. Sin., 2022, 38(7): 2110049-. |
| [11] | Liang Zhou, Yunfeng Li, Yongkang Zhang, Liewei Qiu, Yan Xing. A 0D/2D Bi4V2O11/g-C3N4 S-Scheme Heterojunction with Rapid Interfacial Charges Migration for Photocatalytic Antibiotic Degradation [J]. Acta Phys. -Chim. Sin., 2022, 38(7): 2112027-. |
| [12] | Xiaoqing Jia, Xiaoyu Bai, Zhezhe Ji, Yi Li, Yan Sun, Xueyue Mi, Sihui Zhan. Insight into the Effective Removal of Ciprofloxacin Using a Two-Dimensional Layered NiO/g-C3N4 Composite in Fe-Free Photo-Electro-Fenton System [J]. Acta Phys. -Chim. Sin., 2021, 37(8): 2010042-. |
| [13] | Yiwen Chen, Lingling Li, Quanlong Xu, Düren Tina, Jiajie Fan, Dekun Ma. Controllable Synthesis of g-C3N4 Inverse Opal Photocatalysts for Superior Hydrogen Evolution [J]. Acta Phys. -Chim. Sin., 2021, 37(6): 2009080-. |
| [14] | Zhiliang Jin, Yanbing Li, Xuqiang Hao. Ni, Co-Based Selenide Anchored g-C3N4 for Boosting Photocatalytic Hydrogen Evolution [J]. Acta Phys. -Chim. Sin., 2021, 37(10): 1912033-. |
| [15] | Liang Wang,Chenglu Zhu,Lisha Yin,Wei Huang. Construction of Pt-M (M = Co, Ni, Fe)/g-C3N4 Composites for Highly Efficient Photocatalytic H2 Generation [J]. Acta Physico-Chimica Sinica, 2020, 36(7): 1907001-. |
|
||