journal
https://read.qxmd.com/read/38679575/cations-pillared-and-polyaniline-encapsulated-vanadate-cathode-for-high-performance-aqueous-zinc-ion-batteries
#21
JOURNAL ARTICLE
Mengmeng Ni, Mulan Qin, Hong Chang, Xueru Shi, Bingying Pei, Shuquan Liang, Xinxin Cao
Layered vanadium-based oxides have emerged as highly promising candidates for aqueous zinc-ion batteries (AZIBs) due to their open-framework layer structure and high theoretical capacity among the diverse cathode materials investigated. However, the susceptibility to structural collapse during charge-discharge cycling severely hampers their advancement. Herein, we propose an effective strategy to enhance the cycling stability of vanadium oxides. Initially, the structural integrity of the host material is significantly reinforced by incorporating bi-cations Na+ and NH4+ as "pillars" between the V2O5 layers (NaNVO)...
April 28, 2024: ChemSusChem
https://read.qxmd.com/read/38676292/electrochemical-synthesis-of-hollow-nanoparticles-via-anodic-transformation-of-metastable-core-shell-precursors
#22
JOURNAL ARTICLE
Joon Ho Park, Taeyeon Kang, Hyun S Ahn
Recent advances in electrosynthesis of nanomaterials expanded structural and compositional variations accessible by the electrochemical method; however, reliably synthesizable morphological variety fall shy of that available by conventional solvothermal synthesis. In this communication, electrochemical preparation of surfactant-free hollow nanoparticles is demonstrated. By anodic conversion of core-shell precursors with metastable cores, hollowed nickel nanoparticles with uniform dimensions were synthesized and characterized...
April 26, 2024: ChemSusChem
https://read.qxmd.com/read/38669480/perspective-on-lignin-conversion-strategies-that-enable-next-generation-biorefineries
#23
REVIEW
Shilva Shrestha, Shubhasish Goswami, Deepanwita Banerjee, Valentina Garcia, Elizabeth Zhou, Charles N Olmsted, Erica L-W Majumder, Deepak Kumar, Deepika Awasthi, Aindrila Mukhopadhyay, Steven W Singer, John M Gladden, Blake A Simmons, Hemant Choudhary
The valorization of lignin, a currently underutilized component of lignocellulosic biomass, has attracted attention to promote a stable and circular bioeconomy. Successful approaches including thermochemical, biological, and catalytic lignin depolymerization have been demonstrated, enabling opportunities for lignino-refineries and lignocellulosic biorefineries. Although significant progress in lignin valorization has been made, this review describes unexplored opportunities in chemical and biological routes for lignin depolymerization and thereby contributes to economically and environmentally sustainable lignin-utilizing biorefineries...
April 26, 2024: ChemSusChem
https://read.qxmd.com/read/38666390/unveiling-advancements-trends-and-hotspots-of-metal-organic-frameworks-in-photocatalytic-co2-reduction
#24
JOURNAL ARTICLE
Ziqi Wang, Honghan Fei, Yi-Nan Wu
Metal-organic frameworks (MOFs) are robust, crystalline, and porous materials featured by their superior CO2 adsorption capacity, tunable energy band structure, and enhanced photovoltaic conversion efficiency, making them highly promising for photocatalytic CO2 reduction reaction (PCO2RR). This study presents a comprehensive examination of the advancements in MOFs-based PCO2RR field spanning the period from 2011 to 2023. Employing bibliometric analysis, the paper scrutinizes the widely adopted terminology and citation patterns, elucidating trends in publication, leading research entities, and the thematic evolution within the field...
April 26, 2024: ChemSusChem
https://read.qxmd.com/read/38664234/exploring-the-cooperation-of-the-redox-non-innocent-ligand-and-di-cobalt-center-for-the-water-oxidation-reaction-catalyzed-by-a-binuclear-complex
#25
JOURNAL ARTICLE
Ying-Ying Li, Rong-Zhen Liao
Water oxidation is a crucial reaction in the artificial photosynthesis system. In the present work, density functional calculations were employed to decipher the mechanism of water oxidation catalyzed by a binuclear cobalt complex, which was disclosed to be a homogeneous water oxidation catalyst in pH=7 phosphate buffer. The calculations showed that the catalytic cycle starts from the CoIII,III-OH2 species. Then, a proton-coupled electron transfer followed by a one-electron transfer process leads to the generation of the formal CoIV,IV-OH intermediate...
April 25, 2024: ChemSusChem
https://read.qxmd.com/read/38661456/rational-conversion-of-imine-linkages-to-amide-linkages-in-covalent-organic-frameworks-for-photocatalytic-oxidation-with-enhanced-photostability
#26
JOURNAL ARTICLE
Rui Xue, Yin-Sheng Liu, Ming-Yue Wang, Hao Guo, Wu Yang, Ji-Xi Guo, Guo-Yu Yang
Covalent organic frameworks (COFs) and their applications in photocatalysis have been extensively studied, but the instability of imine-linked COFs is an important factor limiting their performance. In this work, two imine-linked COFs were successfully converted to amide-linked COFs through post synthetic modification (PSM). The oxidized COFs presented lower binding energy to O2, exhibited higher photocatalytic activity for oxidation of thioethers and coupling of benzylamines with excellent stability. The present work can serve as a reliable reference for the development of novel highly active and stable COF-based photocatalysts...
April 25, 2024: ChemSusChem
https://read.qxmd.com/read/38661054/enzyme_metal-organic-framework-composites-as-novel-approach-for-microplastic-degradation
#27
JOURNAL ARTICLE
Irene Ricón, Tania Hidalgo, Giacomo Armani, Sara Rojas Macías, Patricia Horcajada
Plastic pollution is one of the main worldwide environmental concerns. Our lifestyle involves persistent plastic consumption, aggravating the low efficiency of wastewater treatment plants in its removal. Nano/microplastics are accumulated in living beings, pushing to identify new water remediation strategies to avoid their harmful effects. Enzymes (e.g., Candida rugosa-CrL) are known natural plastic degraders as catalysts in depolymerization reactions. However, their practical use is limited by their stability, recyclability, and economical concerns...
April 25, 2024: ChemSusChem
https://read.qxmd.com/read/38660930/facile-synthesis-of-self-supported-solid-amine-sorbents-for-direct-air-capture
#28
JOURNAL ARTICLE
Zhijian Wan, Russell Hunt, Cameron White, Jeremy Gillbanks, Jason Czapla, Gongkui Xiao, Sophia Surin, Colin Wood
Conventional usage of tetraethylenepentamine (TEPA) via being supported on porous solid materials for carbon capture is susceptible to oxidative degradation during regeneration cycles. This study reports a novel method to synthesize a TEPA based solid polymer for efficient CO2 removal via direct air capture (DAC). The polymer was obtained through epoxy-amine crosslinking reaction, leading to the transformation of liquid TEPA to a self-supported solid polymer. The synthesis was conducted under ambient conditions via a one-pot process with no waste products, which is aligned with green synthesis...
April 25, 2024: ChemSusChem
https://read.qxmd.com/read/38660929/one-step-decoration-of-subnanometer-moo-x-clusters-on-bi11vo19-nanotubes-for-visible-light-driven-water-oxidation
#29
JOURNAL ARTICLE
Lifeng Jin, Chao Cheng, Changfa Guo, Saikh Mohammad Wabaidur, Yijun Zhong, Yong Hu
For the sluggish reaction kinetics due to a four-electron transfer process, water oxidation is always a major obstacle to solar splitting of water to hydrogen. It remains a tough challenge to develop efficient nonnoble-metal photocatalysts for water oxidation. Herein, we decorate the host photocatalyst of Bi11VO19 nanotubes with the coatalyst of subnanometer MoOx clusters (denoted as Bi11VO19/MoOx hetero-nanotubes) via a one-step cation-exchange solvothermal reaction using Na2V6O16 nanowires as the hard template...
April 25, 2024: ChemSusChem
https://read.qxmd.com/read/38656829/switchable-regioselective-c-h-activation-annulation-of-acrylamides-with-alkynes-for-the-synthesis-of-2-pyridones
#30
JOURNAL ARTICLE
Chao Chen, Yanni Chen, Zijian Han, Yujie Huang, Yujiao Wang, Xiuyu Tao, Lan Wang, Xiangli Chen, Ruikai Long, Yaxi Yang, Weiliang Zhu, Bing Zhou
A catalyst-based switchable regioselective C-H activation/annulation of acrylamides with propargyl carbonates has been developed, delivering C5 or C6 alkenyl substituted 2-pyridones. This robust protocol proceeds with a broad substrate scope and good functional group tolerance under redox-neutral reaction conditions. More significantly, this reaction is highly effective with previously challenging unsymmetrical alkynes, including unbiased alkyl-alkyl substituted alkynes, with perfect and switchable regioselectivity...
April 24, 2024: ChemSusChem
https://read.qxmd.com/read/38656661/unlocking-enhanced-butadiene-selectivity-the-crucial-role-of-zeolite-channel-confinement-in-the-selective-decarbonylation-of-%C3%AE-valerolactone
#31
JOURNAL ARTICLE
Yukai Qiao, Yao Xiao, Xinbao Zhang, Weiwei Yu, Junjie Li, Longya Xu, Xiangxue Zhu, Anmin Zheng, Xiujie Li
Herein, we report a highly selective production route for butadiene from γ-valerolactone over zeolite catalysts. The catalytic performance of eight zeolites with different framework topologies were compared, revealing that zeolites with narrower 10-membered ring channels exhibit enhanced selectivity of butadiene. Specifically, ZSM-35 and ZSM-22, featuring the narrowest 10-membered ring channels, demonstrate the highest butadiene selectivity to 61% and 59%, respectively. Notably, surface passivation of ZSM-35 leads to a remarkable increase in butadiene selectivity to 82%, maintaining a 99% conversion...
April 24, 2024: ChemSusChem
https://read.qxmd.com/read/38656613/behavior-of-lithium-amide-under-argon-plasma
#32
JOURNAL ARTICLE
Jiaqi Wen, Hong Wen, Han Wu, Liang Yang, Yeqin Guan, Yongli Cai, Wenbo Gao, Qianru Wang, Shaoqian Zhang, Jianping Guo, Ping Chen
Alkali and alkaline earth metal amides are a type of functional materials for hydrogen storage, thermal energy storage, ion conduction, and chemical transformations such as ammonia synthesis and decomposition. The thermal chemistry of lithium amide (LiNH2), as a simple but representative alkali or alkaline earth metal amide, has been well studied previously encouraged by its potentials in hydrogen storage. In comparison, little is known about the interaction of plasma and LiNH2. Herein, we report that the plasma treatment of LiNH2 in an Ar flow under ambient temperature and pressure gives rise to distinctly different reaction products and reaction pathway from that of the thermal process...
April 24, 2024: ChemSusChem
https://read.qxmd.com/read/38655621/process-development-for-the-enzymatic-gram-scale-production-of-the-unnatural-nucleotide-sugar-udp-6-azido-galnac
#33
JOURNAL ARTICLE
Hannes Frohnmeyer, Jorge M M Verkade, Markus Spiertz, Andreas Rentsch, Niels Hoffmann, Milan Sobota, Frank Schwede, Peter Tjeerdsma, Lothar Elling
Azido sugars hold great promise as substrates in numerous click-chemistry applications. However, the synthesis of activated azido sugars is limited by cost and complexity. Conventional chemical activation methods are intricate and time-consuming. In response, we have developed a process for the large-scale production of UDP-6-azido-GalNAc through enzymatic nucleotide sugar synthesis on a gram scale. Our optimization strategies encompassed refining the process parameters of an enzyme cascade featuring NahK from Bifidobacterium longum and AGX1 from Homo sapiens...
April 24, 2024: ChemSusChem
https://read.qxmd.com/read/38654587/circular-and-sustainable-evaluating-lithium-ion-battery-recycling-using-a-combined-statistical-entropy-and-life-cycle-assessment-methodology
#34
JOURNAL ARTICLE
Gulsah Tas, Anna Klemettinen, Rodrigo Serna-Guerrero
While there has been a growing interest on the concept of Circular Economy (CE), its correlation with sustainability remains controversial. In this work, the combination of Statistical Entropy Analysis (SEA) and Life Cycle Assessment (LCA) is proposed as a new methodology to evaluate recycling processes from the perspective of materials circularity and environmental impacts using a Li-ion battery recycling process as a case study. This work addresses the need of quantitative circularity indicators, as SEA evaluates the concentration of materials at a systems level, while LCA measures the environmental impact of recycling processes in comparison with virgin raw materials production...
April 23, 2024: ChemSusChem
https://read.qxmd.com/read/38651621/phosphotungstic-acid-clusters-decorated-znln2s4-nanoflowers-as-molecular-scale-s-scheme-heterojunctions-for-simultaneous-h2-evolution-and-benzyl-alcohol-upgrading
#35
JOURNAL ARTICLE
Weikang Wang, Shaobin Mei, Shahid Khan, Yujue Hu, Lijuan Sun, Muhammad Adnan Qaiser, Chengzhang Zhu, Lele Wang, Qinqin Liu
Simultaneous utilization of photogenerated electrons and holes to achieve overall redox reactions is attractive but still far from practical application. The emerging step (S)-scheme mechanism has proven to be an ideal approach to inhibit charge recombination and supply photoinduced charges with highest redox potentials. Herein, a hierarchical phosphotungstic acid (H3PW12O40, HPW)@Znln2S4 (ZISW) heterojunction was prepared through one-pot hydrothermal method for simultaneous hydrogen (H2) evolution and benzyl alcohol upgrading...
April 23, 2024: ChemSusChem
https://read.qxmd.com/read/38651217/triazine-carbazole-based-covalent-organic-frameworks-as-efficient-heterogeneous-photocatalysts-for-the-oxidation-of-n-aryltetrahydroisoquinolines
#36
JOURNAL ARTICLE
Wen Wang, Fanyu Meng, Yuhongxu Bai, Yongchao Lu, Qingru Yang, Jing Feng, Qing Su, Hao Ren, Qiaolin Wu
Covalent organic frameworks (COFs) have attracted growing interests as new material platform for a range of applications. In this study, a triazine-carbazole-based covalent organic framework (COF-TCZ) was designed as highly porous material with conjugated donor-acceptor networks, and  feasibley synthesized by the Schiff condensation of 4,4',4''-(1,3,5-triazine-2,4,6-triyl)trianiline (TAPB) and 9-(4-formylphenyl)-9H-carbazole-3,6-dicarbaldehyde (CZTA) under the solvothermal condition. Considering the effect of linkage, the imine-linked COF-TCZ was further oxidized to obtain an amide-linked covalent organic framework (COF-TCZ-O)...
April 23, 2024: ChemSusChem
https://read.qxmd.com/read/38650432/visible-light-induced-sulfonylative-cyclization-cascade-of-1-6-enynol-derivatives-with-sulfinic-acids-a-sustainable-approach-for-the-synthesis-of-2-3-disubstituted-benzoheteroles
#37
JOURNAL ARTICLE
Haritha Kumari Arram, Jagadesh Kumar Jangam, Sharadha Nunavath, Rama Krishna Gamidi, Raju Jannapu Reddy
Benzoheteroles are promising structural scaffolds in the realm of medicinal chemistry, but sustainable synthesis of 2,3-difunctionalized benzoheterole derivatives is still in high demand. Indeed, we have conceptually rationalized the intrinsic reactivity of propargylic-enyne systems for the flexible construction of 2,3-disubstituted benzoheteroles through radical sulfonylative-cyclization cascade under organophotoredox catalysis. We hereby report an efficient visible-light-induced sulfonyl radical-triggered cyclization of 1,6-enynols with sulfinic acids under the dual catalytic influence of 4CzIPN and NiBr2...
April 22, 2024: ChemSusChem
https://read.qxmd.com/read/38647354/complete-degradation-of-polyolefin-plastic-wastes-to-high-value-products
#38
JOURNAL ARTICLE
Shaoqin Chen, Yun Hang Hu
Plastic wastes continuously accumulate, causing critical environmental issues. It is urgent to develop efficient strategies to convert them to valuable products. Very recently, two novel approaches for plastic recycling were reported by Huber et al. (Science, 2023, 381, 660-666) and Liu et al. (Science, 2023, 381, 666-671) , where polyethylene (PE) and polypropylene (PP) plastics were converted into potentially valuable products, such as alcohols, aldehydes, surfactants, and detergents. The two processes achieved complete degradation, high selectivity of target products, as well as high values of products, showing economic feasibility for industrial scale-up...
April 22, 2024: ChemSusChem
https://read.qxmd.com/read/38638076/unveiling-a-novel-decomposition-pathway-in-propylene-carbonate-based-supercapacitors-insights-from-a-jelly-roll-configuration-study
#39
JOURNAL ARTICLE
Phatsawit Wuamprakhon, Jiraporn Phojaroen, Thitiphum Sangsanit, Kanruthai Santiyuk, Kan Homlamai, Worapol Tejangkura, Montree Sawangphruk
This research elucidates novel insights into the electrochemical properties and degradation phenomena of propylene carbonate (PC)-based supercapacitors at a large-scale 18650 cylindrical jelly-roll cell level. Central to our findings is the identification of 2-ethyl-4-methyl-1,3-dioxolane (EMD) as a hitherto undocumented decomposition by-product, highlighting the nuanced complexity of PC electrolyte stability. We further demonstrate that elevated operational voltages precipitate accelerated electrolyte degradation, underscoring the criticality of defining the operational voltage window for maximizing device longevity...
April 18, 2024: ChemSusChem
https://read.qxmd.com/read/38635873/manganese-oxide-silica-catalysed-decarboxylative-ketonization-of-aliphatic-carboxylic-acids-in-a-continuous-flow-reactor
#40
JOURNAL ARTICLE
Jonas Felix Goebel, Florian Belitz, Daniel Sowa Prendes, Yannik Haver, Patrick Diehl, Martin Muhler, Lukas J Goossen
The sustainable synthesis of long carbon chain molecules from carbon dioxide, water and electricity relies on the development of waste-free, highly selective C-C bond forming reactions. An example for such a power-to-chemicals process is the industrial-scale fermentation for the production of hexanoic acid. Herein, we describe how this product is transformed into 6-undecanone via decarboxylative ketonization using a heterogeneous manganese oxide / silica catalyst. The reaction reaches full conversion with near-complete selectivity when carried out in a continuous flow reactor, requires no solvent or carrier gas, and releases carbon dioxide and water as the only by-products...
April 18, 2024: ChemSusChem
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