陈耀飞

发布者:2021-03-30发布者:201

[1]. A nanodiamonds-engineered optical-fiber plasmonic interface for sensitivity-enhanced biosensing. Journal of Lightwave Technology, 2023-741(13)4352-4358.(第一作者)

[2]. High-sensitivity optical-fiber magnetic sensor based on diamond and magnetic flux concentrators,Optics Express, 2023-4, 31(9)14685-14693. (通讯作者)

[3]. Nanodiamond-based optical-fiber quantum probe for magnetic field and biological sensing. ACS Sensors, 2022-12, 7(12):3660-3670. (第一作者)

[4]. Highly sensitive vector magnetic fiber sensor based on hyperbolic metamaterials.Science China Physics, Mechanics & Astronomy, 2022-11, 65(11): 1-10.(通讯作者)

[5]. 磁流体型光纤磁场传感研究进展:从标量到矢量;半导体光电2022-8, 43(4): 626-636.(第一作者,特邀综述)

[6]. MoS2-nanoflower enhanced programmable adsorption/desorption plasmonic detection for bipolar-molecules with high sensitivity.Biosensors and Bioelectronics, 2022-2, 198: 113787. (第一作者)

[7]. Ultrahigh-sensitive and compact temperature sensor based on no-core fiber with PMMA coating, Optics Express, 2021-11, 29(23)37591-37601. (第一作者)

[8]. Side-Polished Single-Mode-Multimode-Single-Mode Fiber Structure for the Vector Magnetic Field Sensing, Journal of Lightwave Technology, 2020-10-15, 38(20)5837-5843. (第一作者)

[9]. Half-side gold-coated hetero-core fiber for highly sensitive measurement of a vector magnetic field,Optics Letters, 2020-9, 45(17)4746-4749. (通讯作者)

[10]. High-performance fiber plasmonic sensor by engineering the dispersion of hyperbolic metamaterials composed of Ag/TiO2, Optics Express, 2020-8, 28(17)25562-25573. (第一作者)

[11]. A MoS2 nanoflower and gold nanoparticle-modified surface plasmon resonance biosensor for a sensitivity-improved immunoassay, Journal of Materials Chemistry C, 2020-5, 8(20)6861-6868. (第一作者)

[12]. Photonic cavity enhanced high-performance surface plasmon resonance biosensor, Photonics Research, 2020-4, 8(4)448-456. (通讯作者)

[13]. MoS2 Nanosheets Modified Surface Plasmon Resonance Sensors for Sensitivity Enhancement, Advanced Optical Materials, 2019-7, 7(13): 1900479. (第一作者)

[14]. Side-polished few-mode fiber based surface plasmon resonance biosensor. Optics Express, 2019, 27(8): 11348-11360.(通讯作者)

[15]. Plasmonic interface modified with graphene oxide sheets overlayer for sensitivity enhancement.ACS Applied Materials & Interfaces, 2018, 10(41): 34916-34923.(第一作者)

[16]. High-sensitivity vector magnetic field sensor based on side-polished fiber plasmon and ferrofluid. Optics Letters, 2018, 43(19): 4743-4746.(通讯作者)

[17]. Sensitivity-enhanced surface plasmon sensor modified with MoSe2 overlayer. Optics Express, 2018, 26(26): 34250-34258.(通讯作者)

[18]. Fiber loop ring-down cavity integrated U-bent single-mode-fiber for magnetic field sensing. Photonics Research, 2016, 4(6): 322-326.(第一作者)

[19]. Self-temperature-compensative refractometer based on singlemodemultimodesinglemode fiber structure.Sensors and Actuators B: Chemical, 2015, 212: 107-111.(第一作者)

[20]. Optical fiber magnetic field sensor based on single-mode-multimode-single-mode structure and magnetic fluid. Optics Letters, 2013, 38(20): 3999-4001.(第一作者