Latest Research in Thermal Radiation and Cooling Technologies
14 research papers · 2026 median publication year
Top Research Topics in Thermal Radiation and Cooling Technologies
- 2D Materials and Applications — 5 papers
- Materials Science — 3 papers
- Thermal Radiation and Cooling Technologies — 1 papers
- Ferroelectric and Negative Capacitance Devices — 1 papers
- Iron-based superconductors research — 1 papers
- Superconducting and THz Device Technology — 1 papers
- Graphene research and applications — 1 papers
- Strongly Correlated Electrons — 1 papers
Highest-Cited Papers
- Hopping‐Mediated Zero‐Bias Photocharge Retention in Solution‐Processed Van Der Waals Heterostructures
- Facile Geometry Engineering of Deep Ultraviolet Micro‐Scale Light Emitting and Detecting Diodes for High‐Speed Free‐Space Optical Communication
- Mixed‐Dimensional GaN/AlN Microwires/Graphene/u‐GaN Van der Waals Heterojunctions for High‐Performance Hot‐Electron Transistors and Ultraviolet Photodetectors
- Deterministic patterning and alignment of tellurium quantum wires using nanoscale templates
- Endurance beyond 10 billion cycles in wurtzite ferroelectrics by confining nitrogen vacancies
- Electrochemical Synthesis of Ethyl-Substituted Alkylammonium-Intercalated β-FeSe Superconductors with T c up to 44 K
- Bottom-Up Realization of a Type-II Organic/Transition-Metal Dichalcogenides Heterointerface: Pentacene on Monolayer WS2
- Infrared Illumination-Induced Responsivity Enhancement in Photoelectric Tunable-Step Terahertz Detectors
- In Situ Modulation of the Au-MoS2 Contact Barrier via Triboelectric Plasma-Assisted Electron Injection
- Wafer‐Scale Hyper‐Porous Graphene Network With Intrinsic Ferromagnetism at Room‐Temperature
- Interplay of Magnetic Order, Structural Stability, and Orbital Ordering in BaFe2X3 (X = S and Se)
- X-ray driven displacive excitation of coherent phonons
- A test drive for exchange-correlation functionals on noncollinear magnets: Mn$_3$Ir, Mn$_3$Ge, NiS$_2$, and YMnO$_3$
- Highly Tunable Schottky Barrier to 2D Semiconductors Enabled by an Inorganic‐Molecular‐Crystal Tunneling Layer