日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Synthesis, Characterization, and Electrochemical Behavior of Layered Vanadium Nitride MXene

层状氮化钒MXene的合成、表征和电化学行为

Ngozichukwu, Bright; Kubitza, Niels; Hoagland, Laura; Birkel, Christina S; Djire, Abdoulaye

Lattice-Nitrogen-Mediated Chemistry Suppresses Hydrogen Evolution for Record Faradaic Efficiency in Ammonia Synthesis

晶格氮介导的化学反应抑制氢气析出,在氨合成中实现创纪录的法拉第效率

Yesudoss, David Kumar; Lai, Hao-En; Johnson, Denis; Lee, Mark; Reinhart, Benjamin; Balbuena, Perla B; Djire, Abdoulaye

Vibrational Property Tuning of MXenes Revealed by Sublattice N Reactivity in Polar and Nonpolar Solvents

通过亚晶格氮在极性和非极性溶剂中的反应活性揭示MXene的振动性质调控

Yoo, Ray M S; Ngozichukwu, Bright; Yesudoss, David Kumar; Lai, Hao-En; Arole, Kailash; Green, Micah J; Balbuena, Perla B; Djire, Abdoulaye

Engineering an electroactive bacterial cellulose-carbon nanotube composite membrane against Staphylococcus aureus

构建一种针对金黄色葡萄球菌的电活性细菌纤维素-碳纳米管复合膜

Levin, Daniel S; Cué Royo, Camila S; Johnson, Denis; Ghosh, Soumalya; Balmuri, Sricharani Rao; Usman, Huda; Martínez Vásquez, Shakira M; Yesudoss, David Kumar; Djire, Abdoulaye; Bedewy, Mostafa; Niepa, Tagbo H R

Switchable Charge Storage Mechanism via in Situ Activation of MXene Enables High Capacitance and Stability in Aqueous Electrolytes

通过原位活化MXene实现可切换的电荷存储机制,从而在水系电解质中实现高电容和稳定性

Hsiao, Cheng-Che; Kasten, James; Johnson, Denis; Ngozichukwu, Bright; Yoo, Ray M S; Lee, Seungjoo; Erdemir, Ali; Djire, Abdoulaye

3D Printed Carbon Nanotube/Phenolic Composites for Thermal Dissipation and Electromagnetic Interference Shielding

用于散热和电磁干扰屏蔽的3D打印碳纳米管/酚醛复合材料

Tran, Thang Q; Deshpande, Sayyam; Dasari, Smita Shivraj; Arole, Kailash; Johnson, Denis; Zhang, Yufan; Harkin, Ethan M; Djire, Abdoulaye; Seet, Hang Li; Nai, Sharon Mui Ling; Green, Micah J

Superior cyclability of high surface area vanadium nitride in salt electrolytes

高比表面积氮化钒在盐电解液中具有优异的循环性能

Kasten, James; Hsiao, Cheng-Che; Johnson, Denis; Djire, Abdoulaye

Ti(2)N nitride MXene evokes the Mars-van Krevelen mechanism to achieve high selectivity for nitrogen reduction reaction

Ti(2)N氮化物MXene通过Mars-van Krevelen机制实现对氮还原反应的高选择性

Johnson, Denis; Hunter, Brock; Christie, Jevaun; King, Cullan; Kelley, Eric; Djire, Abdoulaye