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

Copper-based semiconductor nanocrystals for optical applications

用于光学应用的铜基半导体纳米晶体

Marin, Riccardo; Besteiro, Lucas V; Canton, Patrizia

Luminescence-enabled three-dimensional temperature bioimaging

基于发光技术的三维温度生物成像

Ming, Liyan; Romelli, Anna; Lifante, José; Canton, Patrizia; Lifante-Pedrola, Ginés; Jaque, Daniel; Ximendes, Erving; Marin, Riccardo

Accurate and Fast Thermal Sensing via Phase-Responsive Nanothermometers and Neural Networks

利用相位响应纳米温度计和神经网络实现精确快速的热传感

París-Ogáyar, Marina; Ming, Liyan; Zhang, Fengchan; Ximendes, Erving; Marin, Riccardo; Lifante-Pedrola, Ginés; Serrano, Aida; Espinosa, Ana; Haro-González, Patricia; Hernando, Jordi; Ruiz-Molina, Daniel; Otaegui, Jaume Ramon; Roscini, Claudio; Jaque, Daniel

Unlocking Single-Particle Multiparametric Sensing: Decoupling Temperature and Viscosity Readouts through Upconverting Polarized Spectroscopy

解锁单粒子多参数传感:通过上转换偏振光谱技术解耦温度和粘度读数

Ortiz-Rivero, Elisa; Prorok, Katarzyna; Marin, Riccardo; Bednarkiewicz, Artur; Jaque, Daniel; Haro-González, Patricia

Synergistic Enhancement of Photodynamic Cancer Therapy with Mesenchymal Stem Cells and Theranostic Nanoparticles

间充质干细胞与诊疗纳米颗粒协同增强光动力癌症疗法

Butkiene, Greta; Daugelaite, Aleja Marija; Poderys, Vilius; Marin, Riccardo; Steponkiene, Simona; Kazlauske, Evelina; Uzieliene, Ilona; Daunoravicius, Dainius; Jaque, Daniel; Rotomskis, Ricardas; Skripka, Artiom; Vetrone, Fiorenzo; Karabanovas, Vitalijus

New Insights in Luminescence and Quenching Mechanisms of Ag(2)S Nanocrystals through Temperature-Dependent Spectroscopy

通过温度依赖光谱法对Ag(2)S纳米晶体的发光和猝灭机制有了新的认识

de Wit, Jur W; Zabala-Gutierrez, Irene; Marin, Riccardo; Zhakeyev, Adilet; Melle, Sonia; Calderon, Oscar G; Marques-Hueso, Jose; Jaque, Daniel; Rubio-Retama, Jorge; Meijerink, Andries

New opportunities for light-based tumor treatment with an "iron fist"

以“铁腕”手段进行光疗肿瘤治疗的新机遇

Marin, Riccardo; Ximendes, Erving; Jaque, Daniel

Less is more: dimensionality reduction as a general strategy for more precise luminescence thermometry

少即是多:降维作为提高发光测温精度的通用策略

Ximendes, Erving; Marin, Riccardo; Carlos, Luis Dias; Jaque, Daniel

Quantitative Comparison of the Light-to-Heat Conversion Efficiency in Nanomaterials Suitable for Photothermal Therapy

适用于光热疗法的纳米材料光热转换效率的定量比较

Paściak, Agnieszka; Marin, Riccardo; Abiven, Lise; Pilch-Wróbel, Aleksandra; Misiak, Małgorzata; Xu, Wujun; Prorok, Katarzyna; Bezkrovnyi, Oleksii; Marciniak, Łukasz; Chanéac, Corinne; Gazeau, Florence; Bazzi, Rana; Roux, Stéphane; Viana, Bruno; Lehto, Vesa-Pekka; Jaque, Daniel; Bednarkiewicz, Artur

Correction to "Quantitative Comparison of the Light-to-Heat Conversion Efficiency in Nanomaterials Suitable for Photothermal Therapy"

对“适用于光热疗法的纳米材料光热转换效率的定量比较”一文的更正

Paściak, Agnieszka; Marin, Riccardo; Abiven, Lise; Pilch-Wróbel, Aleksandra; Misiak, Małgorzata; Xu, Wujun; Prorok, Katarzyna; Bezkrovnyi, Oleksii; Marciniak, Łukasz; Chaneac, Corinne; Gazeau, Florence; Bazzi, Rana; Roux, Stéphane; Viana, Bruno; Lehto, Vesa-Pekka; Jaque, Daniel; Bednarkiewicz, Artur