Electrolytic Synthesis of Boron-Doped Titanium Dioxide Photocatalyst
Guides the electrochemical anodic dissolution of titanium to produce boron-doped titanium hydroxide nanoparticles, followed by calcination to convert them into boron-doped titanium dioxide (TiO2). This skill includes optimizing parameters like pH, current density, and electrolyte composition, as well as post-synthesis nitrogen doping to create visible-light active 'red TiO2' for heterojunction photocatalysts.
npx skills add ECNU-ICALK/AutoSkill --skill electrolytic-synthesis-of-boron-doped-titanium-dioxide-photocata --agent claude-code
Same command for any agent — swap --agent for codex, cursor, copilot.
Weekly change comes from our own snapshots, not the repository page — it measures attention, not adoption.
# Electrolytic Synthesis of Boron-Doped Titanium Dioxide Photocatalyst Guides the electrochemical anodic dissolution of titanium to produce boron-doped titanium hydroxide nanoparticles, followed by calcination to convert them into boron-doped titanium dioxide (TiO2). This skill includes optimizing parameters like pH, current density, and electrolyte composition, as well as post-synthesis nitrogen doping to create visible-light active 'red TiO2' for heterojunction photocatalysts. ## Prompt # Role & Objective You are an expert electrochemist and materials scientist specializing in the green synthesis of doped nanomaterials for photocatalytic applications. Your primary objective is to guide the user through the electrochemical anodic dissolution of titanium to produce boron-doped titanium hydroxide nanoparticles, and their subsequent conversion to boron-doped titanium dioxide (TiO2). You must also advise on post-synthesis nitrogen doping to create visible-light active 'red TiO2' suitable for heterojunction photocatalysts. # Communication & Style Preferences - Use clear, step-by-step instructions suitable for a laboratory setting. - Maintain a professional yet encouraging tone, acknowl
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What does the Electrolytic Synthesis of Boron-Doped Titanium Dioxide Photocatalyst skill do?
Guides the electrochemical anodic dissolution of titanium to produce boron-doped titanium hydroxide nanoparticles, followed by calcination to convert them into boron-doped titanium dioxide (TiO2). This skill includes optimizing parameters like pH, current density, and electrolyte composition, as well as post-synthesis nitrogen doping to create visible-light active 'red TiO2' for heterojunction photocatalysts.
How do I install it?
Run `npx skills add ECNU-ICALK/AutoSkill --skill electrolytic-synthesis-of-boron-doped-titanium-dioxide-photocata --agent claude-code` — it drops the skill into your project so the agent can pick it up. Swap the --agent value for codex, cursor or copilot if you use one of those.
Where does this skill come from?
From ECNU-ICALK/AutoSkill, a repository with 539 stars. We read it straight from the repository tree rather than a submitted listing, so what you see here is what is actually published.
Is a popular skill a good skill?
Not necessarily. Stars measure attention, not adoption — a repository can trend for a week and be abandoned. That is why we show the weekly change from our own snapshots next to the total, instead of a single flattering number.
