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Japan-based group develops 'liquid laser' that is tunable by wind

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University of Tsukuba says inkjet-printable technology “promises cheaper, flexible optical communications devices.”

Advances and Practical Prospects for Bias‐Free Photovoltaic‐Driven Electrochemical Water Splitting Systems - He - Advanced Energy Materials - Wiley Online Library

Real-Time Monitoring of Gas-Phase and Dissolved CO2 Using a Mixed-Matrix Composite Integrated Fiber Optic Sensor for Carbon Storage Application

Synergy of copper Selenide/MXenes composite with enhanced solar-driven water evaporation and seawater desalination - ScienceDirect

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Japan tech predicts bugs' flight paths to zap them with lasers - Nikkei Asia

Lotus leaf-inspired droplet-based electricity generator with low-adhesive superhydrophobicity for a wide operational droplet volume range and boosted electricity output - ScienceDirect

A Liquid Laser That can be Robust by Wind and is Tunable in Air - Assignment Point

Integrating Dual-Interfacial Liquid Metal Based Nanodroplet Architectures and Micro-Nanostructured Engineering for High Efficiency Solar Energy Harvesting

Low-Voltage Haze Tuning with Cellulose-Network Liquid Crystal Gels

Mesoporous carbon spheres with programmable interiors as efficient nanoreactors for H2O2 electrosynthesis

PDF) Evanescent field trapping and propulsion of Janus particles along optical nanofibers

Japanese Consortium Launches Project to Mass-Produce Floating Wind Foundations

Polyimide/phosphorene hybrid aerogel-based composite phase change materials for high-efficient solar energy capture and photothermal conversion - ScienceDirect