Results 11 to 20 of about 369 (87)

Microwave‐Actuated CuS/CuCo2O4 Heterojunction Microneedles for Synergistic Eradication of Deep‐Seated Biofilms and Inflammatory Microenvironment Remodeling in Acne Treatment

open access: yesRare Metals, Volume 45, Issue 7, July 2026.
ABSTRACT Deep skin infections and dense biofilm barriers caused by Propionibacterium acnes (P. acnes) remain significant challenges in recurrent acne vulgaris, exacerbated by the poor stratum corneum penetration of conventional therapies and rising antibiotic resistance.
Bingran Qi   +3 more
wiley   +1 more source

Advances in BiOCl‐Based Photocatalysts: From Synthesis, Structural Tailoring to Solar Energy Conversion

open access: yesRare Metals, Volume 45, Issue 6, June 2026.
ABSTRACT Semiconductor photocatalysis represents a pivotal frontier in the quest for sustainable energy and environmental remediation. Among the diverse catalytic materials, Bismuth Oxychloride (BiOCl) has emerged as a particularly promising candidate due to its unique layered structure, featuring [Bi2O2]2+ layers intertwined with halogen ions, which ...
Liu Han   +5 more
wiley   +1 more source

An Ultrasound‐Triggered Antibacterial Hydrogel With Integrated Antioxidant and Angiogenic Functions for Infected Wound Care

open access: yesRare Metals, Volume 45, Issue 5, May 2026.
ABSTRACT Managing diabetic wounds requires simultaneously addressing their infectious, oxidative, and regenerative impairments. To address this, this study integrates a piezoelectric BiOCl@CuSe heterojunction (PFM‐verified) into an injectable F127/HA hydrogel, creating an ultrasound‐responsive smart dressing.
Jiayan Guo   +5 more
wiley   +1 more source

电Fenton技术的研究现状及应用进展

open access: yesGongye shui chuli, 2018
电Fenton法通过原位产生的过氧化氢(H2O2)与Fe2+反应生成羟基自由基(·OH)处理难降解有机废水,阴极材料是实现电Fenton高效处理效果的关键因素。简要介绍了电Fenton技术的原理、分类及应用,详细阐述了非金属与金属阴极材料的研究进展。非金属材料主要以碳材料为载体,氮、硼和硫掺杂为主;金属材料主要有Fe、Cu和Ce等。获得高效、廉价的阴极材料是电Fenton技术今后的研究方向之一。
赵庆良, 黄慧彬, 丁晶, 王思宁
doaj   +2 more sources

Recent Advances in Piezocatalysis and Piezo‐Photocatalysis in Energy and Environment: Materials, Design, and Applications

open access: yesRare Metals, Volume 45, Issue 4, April 2026.
ABSTRACT Piezocatalytic technology utilizes mechanical strain or stress‐induced piezoelectric phenomena to produce robust internal electric fields, markedly improving the separation efficiency of e−‐h+ pairs. This method has emerged as a focal point in catalysis by removing reliance on conventional light or electrical energy via its mechanical‐to ...
Yue Zhou   +5 more
wiley   +1 more source

CaO/NaAlO2-微电解-Fenton处理精制棉废水研究

open access: yesGongye shui chuli, 2019
采用CaO/NaAlO2预处理-微电解-Fenton工艺对经物化-生化处理后的精制棉废水进行处理。当控制n(Ca2+):n(Al3+)比为4:1,n(Ca2+):n(Cl-)为11:1时,氯离子去除率达84.11%,COD去除率达81.25%,高于Fenton法、Fe/C微电解法、Fe/C微电解-Fenton联用的较优COD处理效果(42.5%、20.21%、65.625%),GC-MS分析表明,经CaO/NaAlO2-微电解-Fenton处理后废水中有机物大量减少,只有少量γ-谷甾醇残留。
熊泽   +5 more
doaj   +2 more sources

Engineering Geometric Active Sites in Cobalt Spinel Oxides for Energy and Environmental Catalysis

open access: yesRare Metals, Volume 45, Issue 4, April 2026.
ABSTRACT Cobalt‐based spinel oxides (Co3O4 and derivatives) are among the most promising transition metal oxides for electrochemical energy conversion and environmental catalysis due to their abundant active sites, structural tunability, and robust redox flexibility.
Shenning Liu   +6 more
wiley   +1 more source

电-Fenton法在水处理中的研究现状及发展趋势

open access: yesGongye shui chuli, 2009
综述了电-Fenton法的各种类型以及在水处理应用中的国内外研究现状,指出电-Fenton法适用于处理含较高浓度有机物、且有毒性的废水,是一种快捷、经济、高效的废水处理方法。同时提出了电-Fenton法存在的问题和发展趋势,为该法的更深入研究提出了建议。
班福忱, 刘炯天, 程琳, 张佩泽
doaj   +2 more sources

Development of Coupled Electrochemical Systems for Metal Resource Recovery From Aqueous Metal‐Organic Complexes

open access: yesRare Metals, Volume 45, Issue 3, March 2026.
ABSTRACT The past decade has witnessed a burgeoning demand of metals for global industrial development and infrastructure. Meanwhile, the depletion of mineral resources and the environmental damage caused by wastewater discharges pose significant threats to both economic and ecological sustainability. Fortunately, metal‐containing wastewaters also hold
Fei Zhang   +6 more
wiley   +1 more source

丙烯酸及其酯废水深度处理方法的比较研究

open access: yesGongye shui chuli, 2011
探索了几种方法对生化后的丙烯酸及其酯废水深度处理的能力。Fenton法和微波辅助Fenton法对COD的去除率>85%,臭氧氧化法和铁炭微电解法对COD的去除率均<40%,过硫酸铵辅助臭氧氧化法对COD的去除率可达79%,光电催化氧化法对COD的去除率<8%。铁炭微电解法、Fenton法、微波辅助Fenton法、臭氧氧化法可使废水可生化性由0.35分别提高到0.56、0.43、0.44、0.40,光电催化氧化法使废水可生化性锐减为0.03。
李立峰   +5 more
doaj   +2 more sources

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