MOF-derived interface-rich silver/silver oxide nano-structures as an effective electrocatalyst for oxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid (FDCA) with spontaneous FDCA separation in acid media
文献信息
The electrochemical oxidation of 5-hydroxymethylfurfural (HMF) to 2,5-furandicarboxylic acid (FDCA) has attracted considerable attention as it could replace terephthalic acid to synthesize green polymers such as polyethylene 2,5-furandicarboxylate (PEF). In this report, MOF-derived silver/silver oxide (Ag/AgOx–CNx) is prepared for synthesis and simultaneous separation of 2,5-furandicarboxylic acid from the 5-hydroxymethylfurfural oxidation reaction in acid media. Typically, basic conditions are used to oxidize HMF to FDCA. To filter out FDCA, the pH must be lowered until it is insoluble. Therefore, scaling up the process would result in high operating costs due to the purchase of acids and bases and the disposal of salt waste. Ag/AgOx–CNx takes only 1.453 and 1.668 V (vs. RHE) potential to reach 10 mA cm−2 current density for HMF and water oxidation with good stability, respectively. In addition, Ag/AgOx–CNx also possesses ∼75.61% faradaic efficiency for FDCA production under ambient conditions at 10 mA cm−2 current density. HMF oxidation is an alternative anodic reaction for the evolution of H2 in water-splitting cells, which has a higher oxidation rate than water at a particular potential. Ag/AgOx–CNx (anode) shows remarkable overall HMF oxidation reaction with 10 mA cm−2 current density at 1.544 V cell potential while coupling with commercial Pt/C (cathode). The high electrocatalytic activity is due to the presence of interfaces, synergistic interaction between the components, and high electrochemical surface area. This work demonstrates that Ag/AgOx–CNx is an effective electrocatalyst for the simultaneous production of value-added chemicals from biomass-derived compounds and clean hydrogen fuels under ambient conditions using electrochemical devices.
相关文献
High-resolution spectral analysis of ammonia near 6.2 μm using a cw EC-QCL coupled with cavity ring-down spectroscopy
Sanchi Maithani, Santanu Mandal, Abhijit Maity, Mithun Pal
DOI: 10.1039/C7AN02008B
Colorimetric sensor for cimetidine detection in human urine based on d-xylose protected gold nanoparticles
Fan Hu, PinPing Wu, RuYa Wang, Wei Liu
DOI: 10.1039/C8AN00499D
Three-dimensional direct visualization of silica dispersion in polymer-based composites
Zemin Feng, Jinpan Zhong, Weijiang Guan, Rui Tian, Chao Lu, Caifeng Ding
DOI: 10.1039/C8AN00016F
Label-free density-based detection of adipocytes of bone marrow origin using magnetic levitation
Oyku Sarigil, Muge Anil-Inevi, Esra Yilmaz, Gulistan Mese, H. Cumhur Tekin, Engin Ozcivici
DOI: 10.1039/C8AN02503G
A dual-cycling fluorescence scheme for ultrasensitive DNA detection through signal amplification and target regeneration
Idorenyin A. Iwe, Zhigang Li, Jiahao Huang
DOI: 10.1039/C9AN00075E
Voltammetric determination of N-hydroxysuccinimide at conductive diamond electrodes
Tanta Spataru, Mihai Marian Radu, Nicolae Spataru, Akira Fujishima
DOI: 10.1039/C8AN00281A
Ultrasensitive SERS detection of specific oligonucleotides based on Au@AgAg bimetallic nanorods
Cui-Fang Ning, Ya-Fei Tian, Wen Zhou, Bin-Cheng Yin
DOI: 10.1039/C9AN00306A
An improved scoring method for the identification of endogenous peptides based on the Mascot MS/MS ion search
Ying-Lan Chen, Wei-Hung Chang, Chi-Ying Lee, Yet-Ran Chen
DOI: 10.1039/C8AN02141D
Electrochemical signal-amplified detection of 5-methylcytosine and 5-hydroxymethylcytosine in DNA using glucose modification coupled with restriction endonucleases
Yin Yang, Guoqing Yang, Hongfei Chen, Hui Zhang, Jiu-Ju Feng, Chenxin Cai
DOI: 10.1039/C7AN02049J
Predictive modelling of colossal ATR-FTIR spectral data using PLS-DA: empirical differences between PLS1-DA and PLS2-DA algorithms
Loong Chuen Lee, Abdul Aziz Jemain
DOI: 10.1039/C8AN02074D
您可能还喜欢
什么是2,6-二溴-4,8-双[(2-乙基己基)氧基]苯并[1,2-b:4,5-b']二噻吩(CAS号:1226782-13-3)?
2,6-二溴-4,8-双[(2-乙基己基)氧基]苯并[1,2-b:4,5-b']二噻吩是一种有机化合物,分子式为C23H32Br2O2S2。该化合物具有芳香性和...
木聚硫钠(CAS号:37319-17-8)的物理化学性质是什么?
木聚硫钠通常为无色或白色结晶性粉末,具有吸湿性。其分子量约为121.11 g/mol。木聚硫钠易溶于水,不溶于醇类和其他非极性溶剂。在酸性或碱性溶液中,木聚硫钠...
2-甲氧基-4-(三氟甲基)苄溴, JRD(CAS号:886500-59-0)适用哪些法规指南?
该化合物在合成、储存和运输过程中需遵循《全球化学品统一分类和标签制度》(GHS)的健康、环境和物理危险分类。在欧洲还需符合《化学品注册、评估、授权和限制》(RE...
1,4-Diazoniabicyclo[2.2.2]octane-1,4-disulfinate(CAS号:119752-83-9)的主要用途是什么?
1,4-二氮杂双环[2.2.2]辛烷-1,4-二硫酸二酯主要用于有机合成中的保护基团,特别是在保护胺基和硫醇基方面具有广泛应用。此外,它还用于一些特殊化学反应的...
如何处理含有4-(Bromomethyl)-2-fluorobenzenesulphonamide(CAS号:1645275-47-3)的废料?
含有4-(Bromomethyl)-2-fluorobenzenesulphonamide的废液应首先进行中和处理,以降低pH值,避免对环境造成腐蚀性影响。随后...
Loureiriol(CAS号:479195-44-3)的物理化学性质是什么?
Loureiriol是一种天然化合物,其分子式为C15H22O4。Loureiriol为无色结晶性粉末,具有较高的熔点和良好的热稳定性。其相对分子质量为262....
在合成中是否有3-氨基苯甲酰苯胺(CAS号:14315-16-3)的替代品?
在合成过程中,可以考虑使用类似结构的化合物作为3-氨基苯甲酰苯胺的替代品,例如N-苯基-3-氰基苯胺或N-苯基-3-硝基苯胺等,这些化合物具有相似的化学性质,可...
4-异氰酰苯基硼酸频哪醇酯(CAS号:380430-64-8)的市场或研究趋势如何?
4-异氰酰苯基硼酸频哪醇酯主要应用于有机合成、药物化学和材料科学领域。随着绿色化学的发展,该化合物因其高效的官能团转化能力和环境友好性而受到越来越多的关注。近年...
如何储存3β-乙酰氧基-7,25-甘遂二烯-24(R)-醇(CAS号:1352001-09-2)?
3β-乙酰氧基-7,25-甘遂二烯-24(R)-醇应储存在阴凉、干燥、通风良好的地方,避免直接光照。储存容器应密封,防止空气中的水分和氧气影响化合物的稳定性。建...
如何储存4-氟-2-甲基-1H-吲哚(CAS号:1260383-51-4)?
应将4-氟-2-甲基-1H-吲哚存放在阴凉、干燥、通风良好的地方,避免直接暴露在光照下。容器应密封,避免与空气中的水蒸气接触。建议在避光、温度不超过25℃的环境...















