Microfluidic Construction of Responsive Photonic Microcapsules of Cholesteric Liquid Crystal for Colorimetric Temperature Microsensors
暂无分享,去创建一个
Shitao Shen | L. Shui | Zhenping Liu | M. Jin | Shuting Xie | Qilin Ma | Minmin Zhang | Yueming Deng | Yangsong Pan | Haoyue Wang | Lingxia Huang
[1] Rui Huang,et al. Freestanding Helical Nanostructured Chiro‐Photonic Crystal Film and Anticounterfeiting Label Enabled by a Cholesterol‐Grafted Light‐Driven Molecular Motor , 2022, Small methods.
[2] Soo-young Park,et al. Photonic Cholesteric Liquid-Crystal Elastomers with Reprogrammable Helical Pitch and Handedness. , 2021, ACS applied materials & interfaces.
[3] Shuoran Chen,et al. Luminescence Ratiometric Nanothermometry Regulated by Tailoring Annihilators of Triplet-Triplet Annihilation Upconversion Nanomicelles. , 2021, Angewandte Chemie.
[4] B. Tang,et al. A Sensitive and Reliable Organic Fluorescent Nanothermometer for Noninvasive Temperature Sensing. , 2021, Journal of the American Chemical Society.
[5] Y. Gong,et al. Programmable Rainbow-Colored Optofluidic Fiber Laser Encoded with Topologically Structured Chiral Droplets. , 2021, ACS nano.
[6] Y. Geng,et al. Encoding Hidden Information onto Surfaces Using Polymerized Cholesteric Spherical Reflectors , 2021, Advanced Functional Materials.
[7] P. Zhao,et al. 3D‐Printed Biomimetic Systems with Synergetic Color and Shape Responses Based on Oblate Cholesteric Liquid Crystal Droplets , 2021, Advanced materials.
[8] Yanlei Yu,et al. Geminate labels programmed by two-tone microdroplets combining structural and fluorescent color , 2021, Nature Communications.
[9] J. Rogers,et al. Bioresorbable Microdroplet Lasers as Injectable Systems for Transient Thermal Sensing and Modulation. , 2021, ACS nano.
[10] P. Manganotti,et al. Return to school in the COVID-19 era: considerations for temperature measurement , 2020, Journal of medical engineering & technology.
[11] Sang Seok Lee,et al. Photonic Multishells Composed of Cholesteric Liquid Crystals Designed by Controlled Phase Separation in Emulsion Drops , 2020, Advanced materials.
[12] Guofu Zhou,et al. Microfluidic-Assisted Fabrication of Monodisperse Core–Shell Microcapsules for Pressure-Sensitive Adhesive with Enhanced Performance , 2020, Nanomaterials.
[13] A. Schenning,et al. Patterned Full-Color Reflective Coatings Based on Photonic Cholesteric Liquid-Crystalline Particles , 2019, ACS applied materials & interfaces.
[14] Liya Zhou,et al. Cell Imaging Using Two-Photon Excited CdS Fluorescent Quantum Dots Working within the Biological Window , 2019, Nanomaterials.
[15] John A. Rogers,et al. Fully implantable optoelectronic systems for battery-free, multimodal operation in neuroscience research , 2018, Nature Electronics.
[16] Shin‐Hyun Kim,et al. 2-Dimensional colloidal micropatterning of cholesteric liquid crystal microcapsules for temperature-responsive color displays , 2018, Journal of Industrial and Engineering Chemistry.
[17] Jing Chen,et al. Discoloration mechanism, structures and recent applications of thermochromic materials via different methods: A review , 2018, Journal of Materials Science & Technology.
[18] Sang Seok Lee,et al. Controlled Encapsulation of Cholesteric Liquid Crystals Using Emulsion Templates , 2018, Macromolecular Research.
[19] Xiaomin He,et al. Dual Salt- and Thermoresponsive Programmable Bilayer Hydrogel Actuators with Pseudo-Interpenetrating Double-Network Structures. , 2018, ACS applied materials & interfaces.
[20] J. West,et al. Preparation of temperature-response fibers with cholesteric liquid crystal dispersion , 2018, Colloids and Surfaces A: Physicochemical and Engineering Aspects.
[21] T. Bunning,et al. Stimuli‐Driven Control of the Helical Axis of Self‐Organized Soft Helical Superstructures , 2018, Advanced materials.
[22] Claire V. Harper,et al. Temperature regulates NF-κB dynamics and function through timing of A20 transcription , 2018, Proceedings of the National Academy of Sciences.
[23] Yanlei Yu,et al. Piecewise Phototuning of Self‐Organized Helical Superstructures , 2018, Advanced materials.
[24] Sang Seok Lee,et al. Structural Color Palettes of Core–Shell Photonic Ink Capsules Containing Cholesteric Liquid Crystals , 2017, Advanced materials.
[25] Soo-young Park,et al. pH-responsive cholesteric liquid crystal double emulsion droplets prepared by microfluidics , 2017 .
[26] O. Lavrentovich,et al. Electrically tunable laser based on oblique heliconical cholesteric liquid crystal , 2016, Proceedings of the National Academy of Sciences.
[27] Wei Huang,et al. Instantaneous ballistic velocity of suspended Brownian nanocrystals measured by upconversion nanothermometry. , 2016, Nature nanotechnology.
[28] E. Joselevich,et al. Nanoscale thermal imaging of dissipation in quantum systems , 2016, Nature.
[29] Sang Seok Lee,et al. Reconfigurable Photonic Capsules Containing Cholesteric Liquid Crystals with Planar Alignment. , 2015, Angewandte Chemie.
[30] Bumjoon J. Kim,et al. Monodipserse Nanostructured Spheres of Block Copolymers and Nanoparticles via Cross-Flow Membrane Emulsification , 2015 .
[31] G. Crooks,et al. Scaling laws governing stochastic growth and division of single bacterial cells , 2014, Proceedings of the National Academy of Sciences.
[32] Nae-Eung Lee,et al. Flexible and Transparent Nanocomposite of Reduced Graphene Oxide and P(VDF‐TrFE) Copolymer for High Thermal Responsivity in a Field‐Effect Transistor , 2014 .
[33] Qi Zhang,et al. Fabrication of cholesteric liquid crystal microcapsulates by interfacial polymerization and potential as photonic materials , 2013 .
[34] S. Link,et al. Enhancing the Sensitivity of Single-Particle Photothermal Imaging with Thermotropic Liquid Crystals. , 2012, The journal of physical chemistry letters.
[35] S. G. Gaikwad,et al. Ultrasound emulsification: effect of ultrasonic and physicochemical properties on dispersed phase volume and droplet size. , 2008, Ultrasonics sonochemistry.
[36] N. Abbott,et al. Tailoring the interfaces between nematic liquid crystal emulsions and aqueous phases via layer-by-layer assembly. , 2006, Nano letters (Print).
[37] Irina Shiyanovskaya,et al. Single‐substrate encapsulated cholesteric LCDs: Coatable, drapable, and foldable , 2006 .
[38] K. Suh,et al. A novel method for encapsulation of a liquid crystal in monodisperse micron-sized polymer particles , 2001 .
[39] P. Childs,et al. Review of temperature measurement , 2000 .
[40] Bruce M. Spiegelman,et al. Towards a molecular understanding of adaptive thermogenesis , 2000, Nature.
[41] D. J. Broer,et al. Wide-band reflective polarizers from cholesteric polymer networks with a pitch gradient , 1995, Nature.
[42] Soo-young Park,et al. Through the Spherical Looking‐Glass: Asymmetry Enables Multicolored Internal Reflection in Cholesteric Liquid Crystal Shells , 2018 .
[43] Sang Seok Lee,et al. Robust Microfluidic Encapsulation of Cholesteric Liquid Crystals Toward Photonic Ink Capsules , 2015, Advanced materials.
[44] Highly Sensitive Flexible Temperature Sensor Made Using PEDOT:PSS/PANI , 2022 .