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Erschienen in: Journal of Materials Science 16/2018

17.05.2018 | Chemical routes to materials

Facile preparation of porous carbon nitride for visible light photocatalytic reduction and oxidation applications

verfasst von: Shipeng Wan, Man Ou, Yongheng Xiong, Qin Zhong, Shule Zhang

Erschienen in: Journal of Materials Science | Ausgabe 16/2018

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Abstract

In this work, we have employed melamine, cyanuric acid and thymine to fabricate triazine-based carbon nitrides (CNs) by supramolecular approach. The resultant CNs possess large specific surface area, hierarchical porous structure, better light absorption capacity and high separation rate of photoinduced carriers. Then, the photocatalytic reduction and oxidation performance has been evaluated. The obtained CNs exhibit enhanced photocatalytic reduction performance on water splitting to H2, the largest hydrogen evolution rate can reach 8466.3 μmol g−1 h−1, which is 81.9 times as high as that of bulk CN. Simultaneously, the porous CNs show excellent photocatalytic reduction ability on the conversion of CO2 to H2, CO and CH4. Of particular interest is that they have high selectivity for CO. It’s worth noting that the porous CNs also possess outstanding photocatalytic oxidation ability on high concentration nitric oxide (NO), and the highest NO conversion rate can reach 79.3% under visible light. The enhanced photocatalytic performance for the multifunctional porous CN can be ascribed to the synergic effect of large specific surface area, strong light absorption capacity and fast separation of photoinduced electron–hole pairs. Finally, the photocatalytic reduction and oxidation mechanism of the porous CN is also proposed and discussed.

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Literatur
1.
Zurück zum Zitat Wang XC, Maeda K, Thomas A, Takanabe K, Xin G, Carlsson JM, Domen K, Antonietti M (2009) A metal-free polymeric photocatalyst for hydrogen production from water under visible light. Nat Mater 8:76–80 Wang XC, Maeda K, Thomas A, Takanabe K, Xin G, Carlsson JM, Domen K, Antonietti M (2009) A metal-free polymeric photocatalyst for hydrogen production from water under visible light. Nat Mater 8:76–80
2.
Zurück zum Zitat Jourshabani M, Shariatinia Z, Badiei A (2018) Synthesis and characterization of novel Sm2O3/S-doped g-C3N4 nanocomposites with enhanced photocatalytic activities under visible light irradiation. Appl Surf Sci 427:375–387 Jourshabani M, Shariatinia Z, Badiei A (2018) Synthesis and characterization of novel Sm2O3/S-doped g-C3N4 nanocomposites with enhanced photocatalytic activities under visible light irradiation. Appl Surf Sci 427:375–387
3.
Zurück zum Zitat Zheng Y, Liu J, Liang J, Jaroniec M, Qiao SZ (2012) Graphitic carbon nitride materials: controllable synthesis and applications in fuel cells and photocatalysis. Energy Environ Sci 5:6717–6731 Zheng Y, Liu J, Liang J, Jaroniec M, Qiao SZ (2012) Graphitic carbon nitride materials: controllable synthesis and applications in fuel cells and photocatalysis. Energy Environ Sci 5:6717–6731
4.
Zurück zum Zitat Liu JH, Zhang TK, Wang ZC, Dawson G, Chen W (2011) Simple pyrolysis of urea into graphitic carbon nitride with recyclable adsorption and photocatalytic activity. J Mater Chem 21:14398–14401 Liu JH, Zhang TK, Wang ZC, Dawson G, Chen W (2011) Simple pyrolysis of urea into graphitic carbon nitride with recyclable adsorption and photocatalytic activity. J Mater Chem 21:14398–14401
6.
Zurück zum Zitat Dong F, Zhao ZW, Sun YJ, Zhang YX, Yan S, Wu ZB (2015) An advanced semimetal-organic Bi spheres-g-C3N4 nanohybrid with SPR-enhanced visible-light photocatalytic performance for NO purification. Environ Sci Technol 49:12432–12440 Dong F, Zhao ZW, Sun YJ, Zhang YX, Yan S, Wu ZB (2015) An advanced semimetal-organic Bi spheres-g-C3N4 nanohybrid with SPR-enhanced visible-light photocatalytic performance for NO purification. Environ Sci Technol 49:12432–12440
7.
Zurück zum Zitat Zhang J, Guo F, Wang X (2013) An optimized and general synthetic strategy for fabrication of polymeric carbon nitride nanoarchitectures. Adv Funct Mater 23:3008–3014 Zhang J, Guo F, Wang X (2013) An optimized and general synthetic strategy for fabrication of polymeric carbon nitride nanoarchitectures. Adv Funct Mater 23:3008–3014
8.
Zurück zum Zitat Zhang YJ, Mori T, Ye J, Antonietti M (2010) Phosphorus-doped carbon nitride solid: enhanced electrical conductivity and photocurrent generation. J Am Chem Soc 132:6294–6295 Zhang YJ, Mori T, Ye J, Antonietti M (2010) Phosphorus-doped carbon nitride solid: enhanced electrical conductivity and photocurrent generation. J Am Chem Soc 132:6294–6295
9.
Zurück zum Zitat Shalom M, Inal S, Fettkenhauer C, Neher D, Antonietti M (2013) Improving carbon nitride photocatalysis by supramolecular preorganization of monomers. J Am Chem Soc 135:7118–7121 Shalom M, Inal S, Fettkenhauer C, Neher D, Antonietti M (2013) Improving carbon nitride photocatalysis by supramolecular preorganization of monomers. J Am Chem Soc 135:7118–7121
10.
Zurück zum Zitat Wan SP, Zhong Q, Ou M, Zhang SL, Cai W (2017) Supramolecular synthesis of multifunctional holey carbon nitride nanosheet with high-efficiency photocatalytic performance. Adv Opt Mater 1700536 Wan SP, Zhong Q, Ou M, Zhang SL, Cai W (2017) Supramolecular synthesis of multifunctional holey carbon nitride nanosheet with high-efficiency photocatalytic performance. Adv Opt Mater 1700536
11.
Zurück zum Zitat Sano T, Tsutsui S, Koike K, Hirakawa T, Teramoto Y, Negishi N, Takeuchi K (2013) Activation of graphitic carbon nitride (g-C3N4) by alkaline hydrothermal treatment for photocatalytic NO oxidation in Gas Phase. J Mater Chem A 1:6489–6496 Sano T, Tsutsui S, Koike K, Hirakawa T, Teramoto Y, Negishi N, Takeuchi K (2013) Activation of graphitic carbon nitride (g-C3N4) by alkaline hydrothermal treatment for photocatalytic NO oxidation in Gas Phase. J Mater Chem A 1:6489–6496
12.
Zurück zum Zitat Li QY, Yue B, Iwai H, Kako T, Ye J (2010) Carbon nitride polymers sensitized with N-doped tantalic acid for visible light-induced photocatalytic hydrogen evolution. J Phys Chem C 114:4100–4105 Li QY, Yue B, Iwai H, Kako T, Ye J (2010) Carbon nitride polymers sensitized with N-doped tantalic acid for visible light-induced photocatalytic hydrogen evolution. J Phys Chem C 114:4100–4105
13.
Zurück zum Zitat Kailasam K, Epping JD, Thomas A, Losse S, Junge H (2011) Mesoporous carbon nitride-silica composites by a combined sol-gel/thermal condensation approach and their application as photocatalysts. Energy Environ Sci 4:4668–4674 Kailasam K, Epping JD, Thomas A, Losse S, Junge H (2011) Mesoporous carbon nitride-silica composites by a combined sol-gel/thermal condensation approach and their application as photocatalysts. Energy Environ Sci 4:4668–4674
14.
Zurück zum Zitat Chen ZP, Pronkin S, Fellinger TP, Kailasam K, Vilé G, Albabi D, Krumeich F, Leary R et al (2016) Merging single-atom-gispersed silver and carbon nitride to a joint electronic system via copolymerization with silver tricyanomethanide. ACS Nano 10:3166–3175 Chen ZP, Pronkin S, Fellinger TP, Kailasam K, Vilé G, Albabi D, Krumeich F, Leary R et al (2016) Merging single-atom-gispersed silver and carbon nitride to a joint electronic system via copolymerization with silver tricyanomethanide. ACS Nano 10:3166–3175
15.
Zurück zum Zitat Liang J, Jiao Y, Jaroniec M, Qiao SZ (2012) Sulfur and nitrogen dual-doped mesoporous graphene electrocatalyst for oxygen reduction with synergistically enhanced performance. Angew Chem Int Ed 51:11496–11500 Liang J, Jiao Y, Jaroniec M, Qiao SZ (2012) Sulfur and nitrogen dual-doped mesoporous graphene electrocatalyst for oxygen reduction with synergistically enhanced performance. Angew Chem Int Ed 51:11496–11500
16.
Zurück zum Zitat Ran JR, Ma TY, Gao GP, Du XW, Qiao SZ (2015) Porous P-doped graphitic carbon nitride nanosheets for synergistically enhanced visible-light photocatalytic H2 production. Energy Environ Sci 8:3708–3717 Ran JR, Ma TY, Gao GP, Du XW, Qiao SZ (2015) Porous P-doped graphitic carbon nitride nanosheets for synergistically enhanced visible-light photocatalytic H2 production. Energy Environ Sci 8:3708–3717
17.
Zurück zum Zitat Zhang JS, Chen Y, Wang XC (2015) Two-dimensional covalent carbon nitride nanosheets: synthesis, functionalization, and applications. Energy Environ Sci 8:3092–3108 Zhang JS, Chen Y, Wang XC (2015) Two-dimensional covalent carbon nitride nanosheets: synthesis, functionalization, and applications. Energy Environ Sci 8:3092–3108
18.
Zurück zum Zitat Ou M, Wan SP, Zhong Q, Zhang SL, Song Y, Guo LN, Cai W, Xu YL (2018) Hierarchical z-scheme photocatalyst of g-C3N4@Ag/BiVO4 (040) with enhanced visible-light-induced photocatalytic oxidation performance. Appl Catal B Environ 221:97–107 Ou M, Wan SP, Zhong Q, Zhang SL, Song Y, Guo LN, Cai W, Xu YL (2018) Hierarchical z-scheme photocatalyst of g-C3N4@Ag/BiVO4 (040) with enhanced visible-light-induced photocatalytic oxidation performance. Appl Catal B Environ 221:97–107
19.
Zurück zum Zitat Chang C, Zhu LY, Wang SF, Chu XL, Yue LF (2014) Novel mesoporous graphite carbon nitride/BiOI heterojunction for enhancing photocatalytic performance under visible-light irradiation. ACS Appl Mater Interfaces 6:5083–5093 Chang C, Zhu LY, Wang SF, Chu XL, Yue LF (2014) Novel mesoporous graphite carbon nitride/BiOI heterojunction for enhancing photocatalytic performance under visible-light irradiation. ACS Appl Mater Interfaces 6:5083–5093
20.
Zurück zum Zitat Jun YS, Lee EZ, Wang XC, Hong WH, Stucky GD, Thomas A (2013) From melamine-cyanuric acid supramolecular aggregates to carbon nitride hollow spheres. Adv Funct Mater 23:3661–3667 Jun YS, Lee EZ, Wang XC, Hong WH, Stucky GD, Thomas A (2013) From melamine-cyanuric acid supramolecular aggregates to carbon nitride hollow spheres. Adv Funct Mater 23:3661–3667
21.
Zurück zum Zitat Bhunia MK, Melissen S, Parisa MR, Sarawade P, Basset JM, Anjum DH, Mohammed OF, Sautet P et al (2015) Dendritic tip-on polytriazine-based carbon nitride photocatalyst with high hydrogen evolution activity. Chem Mater 27:8237–8247 Bhunia MK, Melissen S, Parisa MR, Sarawade P, Basset JM, Anjum DH, Mohammed OF, Sautet P et al (2015) Dendritic tip-on polytriazine-based carbon nitride photocatalyst with high hydrogen evolution activity. Chem Mater 27:8237–8247
22.
Zurück zum Zitat Jordan T, Fechler N, Xu JS, Brenner TJK, Antonietti M, Shalom M (2015) “Caffeine doping” of carbon/nitrogen-based organic catalysts: caffeine as a supramolecular edge modifier for the synthesis of photoactive carbon nitride tubes. ChemCatChem 7:2826–2830 Jordan T, Fechler N, Xu JS, Brenner TJK, Antonietti M, Shalom M (2015) “Caffeine doping” of carbon/nitrogen-based organic catalysts: caffeine as a supramolecular edge modifier for the synthesis of photoactive carbon nitride tubes. ChemCatChem 7:2826–2830
23.
Zurück zum Zitat Wan SP, Zhong Q, Ou M, Zhang SL (2016) Highly efficient simulated solar-light photocatalytic oxidation of gaseous NO with porous carbon nitride from copolymerization with thymine and mechanistic analysis. RSC Adv 6:101208–101215 Wan SP, Zhong Q, Ou M, Zhang SL (2016) Highly efficient simulated solar-light photocatalytic oxidation of gaseous NO with porous carbon nitride from copolymerization with thymine and mechanistic analysis. RSC Adv 6:101208–101215
24.
Zurück zum Zitat Zhang GG, Li GS, Lan ZA, Lin LH, Savateev A, Heil T, Zafeiratos S, Wang XC et al (2017) Optimizing optical absorption, exciton dissociation, and charge transfer of a polymeric carbon nitride with ultrahigh solar hydrogen production activity. Angew Chem Int Ed 56:13445–13449 Zhang GG, Li GS, Lan ZA, Lin LH, Savateev A, Heil T, Zafeiratos S, Wang XC et al (2017) Optimizing optical absorption, exciton dissociation, and charge transfer of a polymeric carbon nitride with ultrahigh solar hydrogen production activity. Angew Chem Int Ed 56:13445–13449
25.
Zurück zum Zitat Kale VS, Sim U, Yang J, Jin K, Chae SI, Chang WJK, Sinha A, Ha H et al (2017) Sulfur-modifed graphitic carbon nitride nanostructures as an efficient electrocatalyst for water oxidation. Small 13:1603893 Kale VS, Sim U, Yang J, Jin K, Chae SI, Chang WJK, Sinha A, Ha H et al (2017) Sulfur-modifed graphitic carbon nitride nanostructures as an efficient electrocatalyst for water oxidation. Small 13:1603893
26.
Zurück zum Zitat Zhang GG, Zhang JS, Zhang MW, Wang XC (2012) Polycondensation of thiourea into carbon nitride semiconductors as visible light photocatalysts. J Mater Chem 22:8083–8091 Zhang GG, Zhang JS, Zhang MW, Wang XC (2012) Polycondensation of thiourea into carbon nitride semiconductors as visible light photocatalysts. J Mater Chem 22:8083–8091
27.
Zurück zum Zitat Ma LT, Fan HQ, Wang J, Zhao YW, Tian HL, Dong GZ (2016) Water-assisted ions in situ intercalation for porous polymeric graphitic carbon nitride nanosheets with superior photocatalytic hydrogen evolution performance. Appl Catal B Environ 190:93–102 Ma LT, Fan HQ, Wang J, Zhao YW, Tian HL, Dong GZ (2016) Water-assisted ions in situ intercalation for porous polymeric graphitic carbon nitride nanosheets with superior photocatalytic hydrogen evolution performance. Appl Catal B Environ 190:93–102
28.
Zurück zum Zitat Le SK, Jiang TS, Li YW, Zhao Q, Li YY, Fang WB, Gong M (2017) Highly efficient visible-light-driven mesoporous graphitic carbon nitride/ZnO nanocomposite photocatalysts. Appl Catal B Environ 200:601–610 Le SK, Jiang TS, Li YW, Zhao Q, Li YY, Fang WB, Gong M (2017) Highly efficient visible-light-driven mesoporous graphitic carbon nitride/ZnO nanocomposite photocatalysts. Appl Catal B Environ 200:601–610
29.
Zurück zum Zitat Sun H, Zhou XZ, Zhang HZ, Tu WX (2017) An efficient exfoliation method to obtain graphitic carbon nitride nanosheets with superior visible-light photocatalytic activity. Int J Hydrog Energy 42:7930–7937 Sun H, Zhou XZ, Zhang HZ, Tu WX (2017) An efficient exfoliation method to obtain graphitic carbon nitride nanosheets with superior visible-light photocatalytic activity. Int J Hydrog Energy 42:7930–7937
30.
Zurück zum Zitat Han Q, Wang B, Gao J, Qu LT (2016) Graphitic carbon nitride/nitrogen-rich carbon nanofibers: highly efficient photocatalytic hydrogen evolution without cocatalysts. Angew Chem 128:11007–11011 Han Q, Wang B, Gao J, Qu LT (2016) Graphitic carbon nitride/nitrogen-rich carbon nanofibers: highly efficient photocatalytic hydrogen evolution without cocatalysts. Angew Chem 128:11007–11011
31.
Zurück zum Zitat Zhu MS, Kim S, Mao L, Fujitsuka M, Zhang JY, Wang XC, Majima T (2017) Metal-free photocatalyst for H2 evolution in visible to near-infrared region: black phosphorus/graphitic carbon nitride. J Am Chem Soc 139:13234–13242 Zhu MS, Kim S, Mao L, Fujitsuka M, Zhang JY, Wang XC, Majima T (2017) Metal-free photocatalyst for H2 evolution in visible to near-infrared region: black phosphorus/graphitic carbon nitride. J Am Chem Soc 139:13234–13242
32.
Zurück zum Zitat Liang Q, Li Z, Huang Z, Kang F, Yang Q (2015) Holey graphitic carbon nitride nanosheets with carbon vacancies for highly improved photocatalytic hydrogen production. Adv Funct Mater 25:6885–6892 Liang Q, Li Z, Huang Z, Kang F, Yang Q (2015) Holey graphitic carbon nitride nanosheets with carbon vacancies for highly improved photocatalytic hydrogen production. Adv Funct Mater 25:6885–6892
33.
Zurück zum Zitat Zhang JS, Chen XF, Takanabe K, Maeda K, Domen K, Epping JD, Fu XZ, Antonietti M, Wang XC (2010) Synthesis of a carbon nitride structure for visible-light catalysis by copolymerization. Angew Chem 122:451–454 Zhang JS, Chen XF, Takanabe K, Maeda K, Domen K, Epping JD, Fu XZ, Antonietti M, Wang XC (2010) Synthesis of a carbon nitride structure for visible-light catalysis by copolymerization. Angew Chem 122:451–454
34.
Zurück zum Zitat Ouyang SX, Tong H, Umezawa N, Cao JY, Li P, Bi YP, Zhang YJ, Ye JH (2012) Surface-alkalinization-induced enhancement of photocatalytic H2 evolution over SrTiO3-based photocatalysts. J Am Chem Soc 134:1974–1977 Ouyang SX, Tong H, Umezawa N, Cao JY, Li P, Bi YP, Zhang YJ, Ye JH (2012) Surface-alkalinization-induced enhancement of photocatalytic H2 evolution over SrTiO3-based photocatalysts. J Am Chem Soc 134:1974–1977
35.
Zurück zum Zitat Zhang GG, Lan ZA, Lin LH, Lin S, Wang XC (2016) Overall water splitting by Pt/g-C3N4 photocatalysts without using sacrificial agents. Chem Sci 7:3062–3066 Zhang GG, Lan ZA, Lin LH, Lin S, Wang XC (2016) Overall water splitting by Pt/g-C3N4 photocatalysts without using sacrificial agents. Chem Sci 7:3062–3066
36.
Zurück zum Zitat Yang S, Gong Y, Zhang J, Zhang L, Ma L, Fang Z, Vajtai R, Wang X et al (2013) Exfoliated graphitic carbon nitride nanosheets as efficient catalysts for hydrogen evolution under visible light. Adv Mater 25:2452–2456 Yang S, Gong Y, Zhang J, Zhang L, Ma L, Fang Z, Vajtai R, Wang X et al (2013) Exfoliated graphitic carbon nitride nanosheets as efficient catalysts for hydrogen evolution under visible light. Adv Mater 25:2452–2456
37.
Zurück zum Zitat Han Q, Zhao F, Hu C, Lv L, Zhang Z, Chen N, Qu LT (2015) Facile production of ultrathin graphitic carbon nitride nanoplatelets for efficient visible-light water splitting. Nano Res 5:1718–1728 Han Q, Zhao F, Hu C, Lv L, Zhang Z, Chen N, Qu LT (2015) Facile production of ultrathin graphitic carbon nitride nanoplatelets for efficient visible-light water splitting. Nano Res 5:1718–1728
38.
Zurück zum Zitat Lin ZZ, Wang XC (2013) Nanostructure engineering and doping of conjugated carbon nitride semiconductors for hydrogen photosynthesis. Angew Chem Int Ed 52:1735–1738 Lin ZZ, Wang XC (2013) Nanostructure engineering and doping of conjugated carbon nitride semiconductors for hydrogen photosynthesis. Angew Chem Int Ed 52:1735–1738
39.
Zurück zum Zitat Lan ZA, Zhang GG, Wang XC (2016) A facile synthesis of Br-modified g-C3N4 semiconductors for photoredox water splitting. Appl Catal B Environ 192:116–125 Lan ZA, Zhang GG, Wang XC (2016) A facile synthesis of Br-modified g-C3N4 semiconductors for photoredox water splitting. Appl Catal B Environ 192:116–125
40.
Zurück zum Zitat Shi L, Wang T, Zhang HB, Chang K, Ye JH (2015) Electrostatic self-assembly of nanosized carbon nitride nanosheet onto a zirconium metal-organic framework for enhanced photocatalytic CO2 reduction. Adv Funct Mater 25:5360–5367 Shi L, Wang T, Zhang HB, Chang K, Ye JH (2015) Electrostatic self-assembly of nanosized carbon nitride nanosheet onto a zirconium metal-organic framework for enhanced photocatalytic CO2 reduction. Adv Funct Mater 25:5360–5367
41.
Zurück zum Zitat Liu BJ, Torimoto T, Yoneyama H (1988) Photocatalytic reduction of CO2, using surface-modified CdS photocatalysts in organic solvents. J Photochem Photobiol A Chem 113:93–97 Liu BJ, Torimoto T, Yoneyama H (1988) Photocatalytic reduction of CO2, using surface-modified CdS photocatalysts in organic solvents. J Photochem Photobiol A Chem 113:93–97
42.
Zurück zum Zitat Pan XY, Xu YJ (2015) Graphene-templated bottom-up fabrication of ultralarge binary CdS-TiO2 nanosheets for photocatalytic selective reduction. J Phys Chem C 119:7184–7194 Pan XY, Xu YJ (2015) Graphene-templated bottom-up fabrication of ultralarge binary CdS-TiO2 nanosheets for photocatalytic selective reduction. J Phys Chem C 119:7184–7194
43.
Zurück zum Zitat Jin J, Yu JG, Guo DP, Cui C, Ho WK (2015) A hierarchical z-scheme CdS-WO3 photocatalyst with enhanced CO2 reduction activity. Small 11:5262–5271 Jin J, Yu JG, Guo DP, Cui C, Ho WK (2015) A hierarchical z-scheme CdS-WO3 photocatalyst with enhanced CO2 reduction activity. Small 11:5262–5271
44.
Zurück zum Zitat Shi HF, Chen GQ, Zhang CL, Zou ZG (2014) Polymeric g-C3N4 coupled with NaNbO3 nanowires toward enhanced photocatalytic reduction of CO2 into renewable fuel. ACS Catal 4:3637–3643 Shi HF, Chen GQ, Zhang CL, Zou ZG (2014) Polymeric g-C3N4 coupled with NaNbO3 nanowires toward enhanced photocatalytic reduction of CO2 into renewable fuel. ACS Catal 4:3637–3643
45.
Zurück zum Zitat Zhou Y, Tian ZP, Zhao ZY, Liu Q, Kou JH, Chen XY, Gao J et al (2011) High-yield synthesis of ultrathin and uniform Bi2WO6 square nanoplates benefitting from photocatalytic reduction of CO2 into renewable hydrocarbon fuel under visible light. ACS Appl Mater Interfaces 3:3594–3601 Zhou Y, Tian ZP, Zhao ZY, Liu Q, Kou JH, Chen XY, Gao J et al (2011) High-yield synthesis of ultrathin and uniform Bi2WO6 square nanoplates benefitting from photocatalytic reduction of CO2 into renewable hydrocarbon fuel under visible light. ACS Appl Mater Interfaces 3:3594–3601
46.
Zurück zum Zitat Wang JC, Yao HC, Fan ZY, Zhang L, Wang JS, Zang SQ, Li ZJ (2016) Indirect z-scheme BiOI/g-C3N4 photocatalysts with enhanced photoreduction CO2 activity under visible light irradiation. ACS Appl Mater Interfaces 8:3765–3775 Wang JC, Yao HC, Fan ZY, Zhang L, Wang JS, Zang SQ, Li ZJ (2016) Indirect z-scheme BiOI/g-C3N4 photocatalysts with enhanced photoreduction CO2 activity under visible light irradiation. ACS Appl Mater Interfaces 8:3765–3775
47.
Zurück zum Zitat Fu JW, Zhu BC, Jiang CJ, Cheng B, You W, Yu JG (2017) Hierarchical porous O-doped g-C3N4 with enhanced photocatalytic CO2 reduction activity. Small 13:1603938 Fu JW, Zhu BC, Jiang CJ, Cheng B, You W, Yu JG (2017) Hierarchical porous O-doped g-C3N4 with enhanced photocatalytic CO2 reduction activity. Small 13:1603938
48.
Zurück zum Zitat Zhou H, Ding L, Fan TX, Ding J, Zhang D, Guo QX (2014) Leaf-inspired hierarchical porous CdS/Au/N–TiO2 heterostructures for visible light photocatalytic hydrogen evolution. Appl Catal B Environ 147:221–228 Zhou H, Ding L, Fan TX, Ding J, Zhang D, Guo QX (2014) Leaf-inspired hierarchical porous CdS/Au/N–TiO2 heterostructures for visible light photocatalytic hydrogen evolution. Appl Catal B Environ 147:221–228
49.
Zurück zum Zitat Zhang XD, Xie X, Wang H, Zhang JJ, Pan BC, Xie Y (2013) Enhanced photoresponsive ultrathin graphitic-phase C3N4 nanosheets for bioimaging. J Am Chem Soc 135:18–21 Zhang XD, Xie X, Wang H, Zhang JJ, Pan BC, Xie Y (2013) Enhanced photoresponsive ultrathin graphitic-phase C3N4 nanosheets for bioimaging. J Am Chem Soc 135:18–21
50.
Zurück zum Zitat Nie HY, Ou M, Zhong Q, Zhang SL, Yu LM (2015) Efficient visible-light photocatalytic oxidation of gaseous NO with graphitic carbon nitride (g-C3N4) activated by the alkaline hydrothermal treatment and mechanism analysis. J Hazard Mater 300:598–606 Nie HY, Ou M, Zhong Q, Zhang SL, Yu LM (2015) Efficient visible-light photocatalytic oxidation of gaseous NO with graphitic carbon nitride (g-C3N4) activated by the alkaline hydrothermal treatment and mechanism analysis. J Hazard Mater 300:598–606
51.
Zurück zum Zitat Ou HH, Lin LH, Zheng Y, Yang PJ, Fang YX, Wang XC (2017) Tri-s-triazine-based crystalline carbon nitride nanosheets for an improved hydrogen evolution. Adv Mater 29:1700008 Ou HH, Lin LH, Zheng Y, Yang PJ, Fang YX, Wang XC (2017) Tri-s-triazine-based crystalline carbon nitride nanosheets for an improved hydrogen evolution. Adv Mater 29:1700008
52.
Zurück zum Zitat Zhang GG, Zhang MW, Ye XX, Qiu XQ, Lin S, Wang XC (2014) Iodine modified carbon nitride semiconductors as visible light photocatalysts for hydrogen evolution. Adv Mater 26:805–809 Zhang GG, Zhang MW, Ye XX, Qiu XQ, Lin S, Wang XC (2014) Iodine modified carbon nitride semiconductors as visible light photocatalysts for hydrogen evolution. Adv Mater 26:805–809
53.
Zurück zum Zitat Xu H, Yan J, She XJ, Xu L, Xia JX, Xu YG, Song YH, Huang LY et al (2014) Graphene-analogue carbon nitride: novel exfoliation synthesis and its application in photocatalysis and photoelectrochemical selective detection of trace amount of Cu2+. Nanoscale 6:1406–1415 Xu H, Yan J, She XJ, Xu L, Xia JX, Xu YG, Song YH, Huang LY et al (2014) Graphene-analogue carbon nitride: novel exfoliation synthesis and its application in photocatalysis and photoelectrochemical selective detection of trace amount of Cu2+. Nanoscale 6:1406–1415
54.
Zurück zum Zitat Habisreutinger SN, Schmidt-Mende L, Stolarczyk K (2013) Photocatalytic reduction of CO2 on TiO2 and other semiconductors. Angew Chem Int Ed 52:7372–7408 Habisreutinger SN, Schmidt-Mende L, Stolarczyk K (2013) Photocatalytic reduction of CO2 on TiO2 and other semiconductors. Angew Chem Int Ed 52:7372–7408
55.
Zurück zum Zitat Wan SP, Zhong Q, Ou M, Zhang SL, Song FJ (2017) Construction of z-scheme photocatalytic systems using ZnIn2S4, CoOx-loaded Bi2MoO6 and reduced graphene oxide electron mediator and its efficient nonsacrificial water splitting under visible light. Chem Eng J 325:690–699 Wan SP, Zhong Q, Ou M, Zhang SL, Song FJ (2017) Construction of z-scheme photocatalytic systems using ZnIn2S4, CoOx-loaded Bi2MoO6 and reduced graphene oxide electron mediator and its efficient nonsacrificial water splitting under visible light. Chem Eng J 325:690–699
56.
Zurück zum Zitat Ou HH, Yang PJ, Lin LH, Anpo M, Wang XC (2017) Carbon nitride aerogels for the photoredox conversion of water. Angew Chem Int Ed 56:10905–10910 Ou HH, Yang PJ, Lin LH, Anpo M, Wang XC (2017) Carbon nitride aerogels for the photoredox conversion of water. Angew Chem Int Ed 56:10905–10910
57.
Zurück zum Zitat Cai W, Zhong Q, Zhao W, Bu YF (2015) Focus on the modified CexZr1−xO2 with the rigid benzene-muti-carboxylate ligands and its catalysis in oxidation of NO. Appl Catal B Environ 158–159:258–268 Cai W, Zhong Q, Zhao W, Bu YF (2015) Focus on the modified CexZr1−xO2 with the rigid benzene-muti-carboxylate ligands and its catalysis in oxidation of NO. Appl Catal B Environ 158–159:258–268
59.
Zurück zum Zitat Wan SP, Zhong Q, Ou M, Zhang SL, Cai W (2017) Facile synthesis of sheet-like carbon nitride from preorganized hydrogen bonded supramolecular precursors and its High efficient photocatalytic oxidation of gas-phase NO. J Photochem Photobiol A Chem 340:136–145 Wan SP, Zhong Q, Ou M, Zhang SL, Cai W (2017) Facile synthesis of sheet-like carbon nitride from preorganized hydrogen bonded supramolecular precursors and its High efficient photocatalytic oxidation of gas-phase NO. J Photochem Photobiol A Chem 340:136–145
60.
Zurück zum Zitat Ou M, Zhong Q, Zhang SL, Yu LM (2015) Ultrasound assisted synthesis of heterogeneous g-C3N4/BiVO4 composites and their visible-light-induced photocatalytic oxidation of NO in gas phase. J Alloys Compd 626:401–409 Ou M, Zhong Q, Zhang SL, Yu LM (2015) Ultrasound assisted synthesis of heterogeneous g-C3N4/BiVO4 composites and their visible-light-induced photocatalytic oxidation of NO in gas phase. J Alloys Compd 626:401–409
Metadaten
Titel
Facile preparation of porous carbon nitride for visible light photocatalytic reduction and oxidation applications
verfasst von
Shipeng Wan
Man Ou
Yongheng Xiong
Qin Zhong
Shule Zhang
Publikationsdatum
17.05.2018
Verlag
Springer US
Erschienen in
Journal of Materials Science / Ausgabe 16/2018
Print ISSN: 0022-2461
Elektronische ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-018-2441-y

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