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Journals Journal of Colloid and Interfa...

Journal of Colloid and Interface Science

https://read.qxmd.com/read/38613974/mesoporous-cobalt-manganese-layered-double-hydroxides-promote-the-activation-of-calcium-sulfite-for-degradation-and-detoxification-of-metronidazole
#21
JOURNAL ARTICLE
Akbar Mamatali, Dedong Wu, Haijiao Xie, Pengfei Xiao
Metronidazole (MNZ), a commonly used antibiotic, poses risks to water bodies and human health due to its potential carcinogenic, mutagenic, and genotoxic effects. In this study, mesoporous cobalt-manganese layered double hydroxides (Cox Mny -LDH) with abundant oxygen vacancies (Ov ) were successfully synthesized using the co-precipitation method and used to activate calcium sulfite (CaSO3 ) with slight soluble in water for MNZ degradation. The characterization results revealed that Co2 Mn-LDH had higher specific areas and exhibited good crystallinity...
April 9, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38613972/high-performance-heterometallic-photocatalysts-afforded-by-polyoxometalate-synthons-for-efficient-h-2-production
#22
JOURNAL ARTICLE
Shuanghe Fu, Shifa Ullah Khan, Ruoru Yang, Haijun Pang, Chi-Ming Au, Huiyuan Ma, Xinming Wang, Guixin Yang, Wenlong Sun, Wing-Yiu Yu
MoS2 -based materials have emerged as photoelectric semiconductors characterized by a narrow band gap, high capacity for absorbing visible light, and reduced H2 adsorption energy comparable to Pt. These attributes render them appealing for application in photocatalytic hydrogen production. Despite these advantages, the widespread adoption of MoS2 -based materials remains hindered by challenges associated with limited exposure to active sites and suboptimal catalytic hydrogen production efficiency. To address these issues, we have designed and synthesized a new class of highly dispersed bimetallic/trimetallic sulfide materials...
April 9, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38613970/dry-processed-technology-for-flexible-and-high-performance-fes-2-based-all-solid-state-lithium-batteries-at-low-stack-pressure
#23
JOURNAL ARTICLE
Chao Shen, Libin Hu, Haihua Tao, Yiqian Liu, Qiuhong Li, Wenrong Li, Tengzhou Ma, Bing Zhao, Jiujun Zhang, Yong Jiang
All-solid-state lithium batteries (ASSLBs) are considered promising energy storage systems due to their high energy density and inherent safety. However, scalable fabrication of ASSLBs based on transition metal sulfide cathodes through the conventional powder cold-pressing method with ultrahigh stacking pressure remains challenging. This article elucidates a dry process methodology for preparing flexible and high-performance FeS2 -based ASSLBs under low stack pressure by utilizing polytetrafluoroethylene (PTFE) binder...
April 9, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38608640/temperature-induced-migration-of-electro-neutral-interacting-colloidal-particles
#24
JOURNAL ARTICLE
J K G Dhont, W J Briels
Migration of colloidal particles induced by temperature gradients is commonly referred to as thermodiffusion, thermal diffusion, or the (Ludwig-)Soret effect. The thermophoretic force experienced by a colloidal particle that drives thermodiffusion consists of two distinct contributions: a contribution resulting from internal degrees of freedom of single colloidal particles, and a contribution due to the interactions between the colloids. We present an irreversible thermodynamics based theory for the latter collective contribution to the thermophoretic force...
April 9, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38608639/multiple-na-transport-pathways-and-interfacial-compatibility-enable-high-capacity-room-temperature-quasi-solid-sodium-batteries
#25
JOURNAL ARTICLE
Yueqing Li, Bixia Wei, Jing Yu, Dengjie Chen
Sodium-metal batteries (SMBs) are ideal for large-scale energy storage due to their stable operation and high capacity. However, they have safety issues caused by severe dendrite growth and side reactions, particularly when using liquid electrolytes. Therefore, it is critically important to develop electrolytes with high ionic conductivity and improved safety that are non-flammable and resistant to dendrites. Here, we developed polymerized polyethylene glycol diacrylate (PEGDA)-modified poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP) electrolytes (PPEs) with highly conductive sodium bis(trifluoromethanesulfonyl)imide and corrosion-inhibitive sodium bis(oxalato)borate salts for SMBs...
April 9, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38608637/synthesis-and-characterization-of-core-shell-high-nickel-cobalt-free-layered-lini-0-95-mg-0-02-al-0-03-o-2-li-2-zro-3-cathode-for-high-performance-lithium-ion-batteries
#26
JOURNAL ARTICLE
Zi Wang, Lei Li, Hyunjee Heo, Lulin Ren, Yumeng Wei, Kyuyeon Lee, Hao Tian, Zhengzheng Xu, Zhihua Sun, Taehee Kim, Hongxun Yang, Hyung-Ho Park
High-nickel cobalt-free layered cathode is regarded as a highly potential cathode material for the next generation lithium ion batteries (LIBs) because of its high energy density, low cost and environmentally benign. However, the poor cycle performance caused by its intrinsic unstable structure and chemo-mechanical instability frustrates its practical applications. Herein, we have developed a new core-shell high-nickel cobalt-free layered LiNi0.95 Mg0.02 Al0.03 O2 @Li2 ZrO3 (LZO-NMA9523) cathode for high-performance LIBs...
April 9, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38615624/manipulating-amorphous-and-crystalline-hybridization-of-na-3-v-2-po-4-3-c-for-enhancing-sodium-ion-diffusion-kinetics
#27
JOURNAL ARTICLE
Yingjie Zhou, Xiecheng Yang, Minjie Hou, Lanqing Zhao, Xiyue Zhang, Feng Liang
Na3 V2 (PO4 )3 (NVP) has attracted considerable attention as a promising cathode material for sodium-ion batteries (SIBs). But its insufficient electronic conductivity, limited capacities, and fragile structure hinder its extended application, particularly in scenarios involving rapid charging and prolonged cycling. A hybrid cathode material has been developed to integrate both amorphous and crystalline phases, with the objective of improving the rate performance and Na storage capacity by leveraging bi-phase coordination...
April 8, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38603883/micro-mesoporous-cobalt-phosphosulfide-co-3-s-4-cop-nc-nanowires-for-ultrahigh-rate-capacity-and-ultrastable-sodium-ion-battery
#28
JOURNAL ARTICLE
Lantao Chen, Zhiting Liu, Wei Yang, Shimei Wu, Yining Li, Yufei Zhang, Lingxing Zeng, Haosen Fan
The construction of heterostructure materials has been demonstrated as the promising approach to design high-performance anode materials for sodium ion batteries (SIBs). Herein, micro-mesoporous cobalt phosphosulfide nanowires (Co3 S4 /CoP/NC) with Co3 S4 /CoP hetero-nanocrystals encapsulating into N-doped carbon frameworks were successfully synthesized via hydrothermal reaction and subsequent phosphosulfidation process. The obtained micro-mesoporous nanowires greatly improve the charge transport kinetics from the facilitation of the charge transport into the inner part of nanowire...
April 8, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38603881/molecular-interaction-mechanism-for-humic-acids-fouling-resistance-on-charged-zwitterion-like-and-zwitterionic-surfaces
#29
JOURNAL ARTICLE
Qiuyi Lu, Zhoujie Wang, Shishuang Zhang, Jingyi Wang, Xiaohui Mao, Lei Xie, Qi Liu, Hongbo Zeng
Humic acids (HA) are ubiquitous in surface waters, leading to significant fouling challenges. While zwitterion-like and zwitterionic surfaces have emerged as promising candidates for antifouling, a quantitative understanding of molecular interaction mechanism, particularly at the nanoscale, still remains elusive. In this work, the intermolecular forces between HA and charged, zwitterion-like or zwitterionic monolayers in aqueous environments were quantified using atomic force microscope. Compared to cationic MTAC ([2-(methacryloyloxy)ethyl]trimethylammonium chloride), which exhibited an adhesion energy of ∼1...
April 6, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38603880/melamine-based-metal-organic-frameworks-for-high-performance-supercapacitor-applications
#30
JOURNAL ARTICLE
Ramkumar Vanaraj, Santhanaraj Daniel, Gopiraman Mayakrishnan, Karthikeyan Govindarasu Gunasekaran, Bharathi Arumugam, Cadiam Mohan Babu, Seong Cheol Kim
Melamine-based metal-organic frameworks (MOFs) for high-performance supercapacitor applications are described in this paper. Melamine (Me) is employed as an organic linker, and three metal ions cobalt, nickel, and iron (Co, Ni, Fe) are used ascentral metal ions to manufacture the desired MOF materials (Co-Me, Ni-Me, and Fe-Me). While melamine is an inexpensive organic linker for creating MOF materials, homogenous molecular structures can be difficult to produce. The most effective technique for expanding the molecular structures of MOFs through suitable experimental optimization is used in this work...
April 6, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38603878/effect-of-molecular-branching-and-surface-wettability-on-solid-liquid-surface-tension-and-line-tension-of-liquid-alkane-surface-nanodroplets
#31
JOURNAL ARTICLE
Ahmad Jabbarzadeh
HYPOTHESIS: Surface nanodroplets have important technological applications. Previous experiments and simulations have shown that their contact angle deviates from Young's equation. A modified version of Young's equation considering the three-phase line tension (τ) has been widely used in literature, and a wide range of values for τ are reported. We have recently shown that molecular branching affects the liquid-vapour surface tension γlv of liquid alkanes. Therefore, the wetting behaviour of surface nanodroplets should be affected by molecular branching...
April 6, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38603874/designing-core-shell-heterostructure-arrays-based-on-snowflake-nicofe-lth-shelled-over-w-2-n-wc-nanowires-as-an-advanced-bi-functional-electrocatalyst-for-boosting-alkaline-water-seawater-electrolysis
#32
JOURNAL ARTICLE
Mohsen Abedi, Sharifeh Rezaee, Saeed Shahrokhian
The pursuit of efficient and sustainable hydrogen production through water splitting has led to intensive research in the field of electrocatalysis. However, the impediment posed by sluggish reaction kinetics has served as a significant barrier. This challenge has inspired the development of electrocatalysts characterized by high activity, abundance in earth's resources, and long-term stability. In addressing this obstacle, it is imperative to meticulously fine-tune the structure, morphology, and electronic state of electrocatalysts...
April 6, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38603873/carbon-nanotube-encapsulated-co-co-3-fe-7-heterojunctions-as-a-highly-efficient-bifunctional-electrocatalyst-for-rechargeable-zinc-air-batteries
#33
JOURNAL ARTICLE
Xiaofeng Liu, Sichen Huo, Xiaoqin Xu, Xinyu Wang, Wanyu Zhang, Yanjie Chen, Cheng Wang, JiahaoXie, Xueting Liu, Haiyang Chang, Jinlong Zou
In oxygen electrocatalysis, how to rationally design low-cost catalysts with reasonable structure and long-term stability is a crucial issue. Here, an in-situ growth strategy is used to construct a shaped structure encapsulating a uniformly-dispersed Co/Co3 Fe7 heterojunction in nitrogen-doped carbon nanotubes (Co/Co3 Fe7 @NCNTs). Hollow CoFe layered-double-hydroxide prisms act as sacrifices for in-situ growth of Co/Co3 Fe7 nanoparticles, which also catalyze the growth of bamboo-like NCNTs. Tubular structure not only accelerates the charge transfer through the interactions between Co and Co3 Fe7 , but also limits the aggregation of the particles, thereby promoting the 4e- oxygen reduction/evolution reactions (ORR/OER) kinetics and stabilizing the bifunctional activity...
April 6, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38598998/four-component-of-double-layer-infinite-coordination-polymer-nanocomposites-for-large-tumor-trimodal-therapy-via-multi-high-efficiency-synergies
#34
JOURNAL ARTICLE
Shuai Zhang, Shuo Zhang, Siyuan Luo, Rong Wang, Jingran Di, Ya Wang, Daocheng Wu
Multimodal /components tumors synergistic therapy is a crucial approach for enhancing comprehensive efficacy. Our research has identified lots of high efficiency synergies among four suitable components, revealing combinations with remarkably low combination index (CI) values (10-3 -10-8 ). These combinations hold promise for large tumor powerful electrothermal-thermodynamic-multi-chemo trimodal therapy. To implement this approach, we developed four-component of double-layer infinite coordination polymer (ICP) nanocomposites, in which hypoxia-activated AQ4N and thermodynamic agent AIPH coordinated with Cu(Ⅱ) to form initial layer of positively charged ICPs-l NPs, chemotherapeutic agents gossypol-hyaluronic acid (G-HA) and CA4 coordinated with Fe(Ⅲ) to form out layer of negatively charged ICPs-2 NPs, then double-layer infinite coordination polymer nanocomposites (ICPs-1@ICPs-2 CNPs) were fabricated by electrostatic adsorption using ICPs-l NPs and ICPs-2 NPs...
April 6, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38598997/a-multifunctional-cascade-enzyme-system-for-enhanced-starvation-chemodynamic-combination-therapy-against-hypoxic-tumors
#35
JOURNAL ARTICLE
Zihan Xing, Linwei Li, Tao Liao, Jinyu Wang, Yuhao Guo, Ziqiang Xu, Wenqian Yu, Ying Kuang, Cao Li
Starvation therapy has shown promise as a cancer treatment, but its efficacy is often limited when used alone. In this work, a multifunctional nanoscale cascade enzyme system, named CaCO3 @MnO2 -NH2 @GOx@PVP (CMGP), was fabricated for enhanced starvation/chemodynamic combination cancer therapy. CMGP is composed of CaCO3 nanoparticles wrapped in a MnO2 shell, with glucose oxidase (GOx) adsorbed and modified with polyvinylpyrrolidone (PVP). MnO2 decomposes H2 O2 in cancer cells into O2 , which enhances the efficiency of GOx-mediated starvation therapy...
April 6, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38598995/room-temperature-ultrafast-and-one-step-synthesis-of-highly-fluorescent-sulfur-quantum-dots-probe-and-their-logic-gate-operation
#36
JOURNAL ARTICLE
Pengxiang Gao, Weiheng Zhong, Tengbao Li, Weizhen Liu, Li Zhou
The direct and rapid conversion of abundant and cheap elemental sulfur into fluorescent sulfur quantum dots (SQDs) at room temperature is a critical and urgent challenge. Conventional synthesis methods require high temperatures, high pressures, or specific atmospheric conditions, making them complex and impractical for real applications. Herein, we propose a simple method for synthesizing SQDs simply by adding H2 O2 to an elemental sulfur-ethylenediamine (S-EDA) solution at room temperature. Remarkably, within a mere 10 min, SQDs with a photoluminescence quantum yield of 23...
April 6, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38603872/synergistically-engineered-in-situ-self-assembled-heterostructure-composite-nanofiber-cathode-with-superior-oxygen-reduction-reaction-catalysis-for-solid-oxide-fuel-cells
#37
JOURNAL ARTICLE
Hao Lou, Haixia Zhang, Chuangang Yao, Mingcun Chen, Zhe Zhang, Baixi Xia, Yuxi Sun, Wenwen Zhang, Haocong Wang, Xiaoshi Lang, Kedi Cai
The engineering and exploration of cathode materials to achieve superior oxygen reduction catalytic activity and resistance to CO2 are crucial for enhancing the performance of solid oxide fuel cells (SOFCs). Herein, a novel heterostructure composite nanofiber cathode comprised of PrBa0.5 Sr0.5 Co2 O5+δ and Ce0.8 Pr0.2 O1.9 (PBSC-CPO-ES) was prepared for the first time through a synergistic approach involving in-situ self-assembly and electrostatic spinning techniques. PBSC-CPO-ES exhibits exceptionally high oxygen reduction catalytic activity and CO2 resistance, which is attributed to its unique nanofiber microstructure and abundant presence of heterointerfaces, significantly accelerating the charge transfer process, surface exchange and bulk diffusion of oxygen...
April 5, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38603871/potential-dependent-activities-in-interpreting-the-reaction-mechanism-of-dual-metal-atom-catalysts-for-li-co-2-batteries
#38
JOURNAL ARTICLE
Xiaolin Liu, Mengjun Zhou, Xiaobin Liao, Yan Zhao
CO2 electrochemistry has been considered as a promising cathode reaction for energy storage due to its high theoretical energy density, high electrochemical potential, and ability to fix CO2 . However, the low efficiency and poor reversibility of Li-CO2 evolution significantly impede the applications of Li-CO2 batteries. Herein, first-principles calculations were employed to investigate the 21 M1 M2 N4 C dual-atom catalysts and explore the catalytic mechanism for the Li-CO2 evolution reaction. Among these dual-atom catalysts, the MoMoN4 C shows the highest adsorption interaction with CO2 due to its high d-center and d-p orbital coupling...
April 5, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38603876/rational-design-and-construction-of-hierarchical-porous-quasi-hexagonal-co-2-p-nanosheets-co-heterostructures-as-highly-efficient-bifunctional-electrocatalysts-for-overall-water-splitting
#39
JOURNAL ARTICLE
Cun Hu, Fengyun Ding, Aojie Liu, Linsen Zhou, Ning Zeng, Chao Lv, Xin Zhang, Wenwen Yong, Jinguang Cai, Tao Tang
Constructing heterostructured electrocatalysts has proven effective in enhancing intrinsic catalytic activity. Herein, under guidance of theoretical calculations, hierarchical porous quasi-hexagonal Co2 P nanosheets/Co heterostructures supported on carbon cloth (Co2 P/Co/CC) with a high surface area were rationally designed and elaborately constructed through electroless Co plating, electrochemical oxidation, and phosphidation process, which showed significant electrocatalytic performance toward water electrolysis...
April 4, 2024: Journal of Colloid and Interface Science
https://read.qxmd.com/read/38593654/double-hydrogen-bonding-induced-compact-h-type-%C3%AF-%C3%AF-stacking-enhancing-rapid-carrier-transfer-in-perylene-diimide-supramolecules-achieving-high-oxygen-evolution-performance
#40
JOURNAL ARTICLE
Shulin Meng, Yinan Hu, Haocheng Zhao, Huiting Yao, Yuling Wu, Jinbo Xue, Qianqian Shen
Perylene diimides (PDI) are widely used in photocatalytic oxygen evolution due to their deep valence band potentials. Here, we report the synthesis of a unique supramolecular photocatalyst (designated s-PDI-P1) by introducing hydroxyl and carboxyl groups at the imide position of PDI. This modification allows the formation of intermolecular double hydrogen bond structures between the hydroxyl groups, oxygen atoms on the perylene cores and the carboxyl groups. The resulting double hydrogen bonding structures reduce lateral slip and promote the formation of supramolecular structures with H-type π-π stacking...
April 4, 2024: Journal of Colloid and Interface Science
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