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

Enhancing Antioxidants Performance of Ceria Nanoparticles in Biological Environment via Surface Engineering with o-Quinone Functionalities

利用邻醌功能化进行表面工程以增强二氧化铈纳米粒子在生物环境中的抗氧化性能

Lasala, Pierluigi; Latronico, Tiziana; Mattia, Umberto; Matteucci, Rosa Maria; Milella, Antonella; Grattieri, Matteo; Liuzzi, Grazia Maria; Petrosillo, Giuseppe; Panniello, Annamaria; Depalo, Nicoletta; Curri, Maria Lucia; Fanizza, Elisabetta

A Bluetooth-Enabled Electrochemical Platform Based on Saccharomyces cerevisiae Yeast Cells for Copper Detection

基于酿酒酵母细胞的蓝牙电化学平台用于铜检测

Wahid, Ehtisham; Ocheja, Ohiemi Benjamin; Longo, Antonello; Marsili, Enrico; Trotta, Massimo; Grattieri, Matteo; Guaragnella, Cataldo; Guaragnella, Nicoletta

Immobilized Saccharomyces cerevisiae viable cells for electrochemical biosensing of Cu(II)

用于电化学生物传感Cu(II)的固定化酿酒酵母活细胞

Wahid, Ehtisham; Ocheja, Ohiemi Benjamin; Oguntomi, Sunday Olakunle; Pan, Run; Grattieri, Matteo; Guaragnella, Nicoletta; Guaragnella, Cataldo; Marsili, Enrico

Living Diatom Microalgae for Desiccation-Resistant Electrodes in Biophotovoltaic Devices

用于生物光伏器件中耐干燥电极的活硅藻微藻

Vicente-Garcia, Cesar; Vona, Danilo; Milano, Francesco; Buscemi, Gabriella; Grattieri, Matteo; Ragni, Roberta; Farinola, Gianluca M

Enzymatic and Microbial Electrochemistry: Approaches and Methods

酶和微生物电化学:方法与途径

Bedendi, Giada; De Moura Torquato, Lilian D; Webb, Sophie; Cadoux, Cécile; Kulkarni, Amogh; Sahin, Selmihan; Maroni, Plinio; Milton, Ross D; Grattieri, Matteo

Bio-Inspired Redox-Adhesive Polydopamine Matrix for Intact Bacteria Biohybrid Photoanodes

用于完整细菌生物混合光阳极的仿生氧化还原粘附聚多巴胺基质

Buscemi, Gabriella; Vona, Danilo; Stufano, Paolo; Labarile, Rossella; Cosma, Pinalysa; Agostiano, Angela; Trotta, Massimo; Farinola, Gianluca M; Grattieri, Matteo

Rational design of artificial redox-mediating systems toward upgrading photobioelectrocatalysis

合理设计人工氧化还原介导系统以提升光生物电催化性能

Weliwatte, N Samali; Grattieri, Matteo; Minteer, Shelley D

Unveiling salinity effects on photo-bioelectrocatalysis through combination of bioinformatics and electrochemistry

通过生物信息学和电化学的结合揭示盐度对光生物电催化的影响

Erin M Gaffney, Matteo Grattieri, Kevin Beaver, Jennie Pham, Caitlin McCartney, Shelley D Minteer