A skill your agent uses when targeting ACS Catalysis (ACS Catal) or deciding whether a catalysis manuscript fits this primary-research venue spanning heterogeneous, homogeneous, bio-, electro-, and…

MITAuto-check passed

Install Acs Catalysis

skills CLI
$ npx skills add brycewang-stanford/Awesome-Journal-Skills --skill acs-catalysis -a claude-code

Project install by default; add -g for ~/.claude/skills/.

GitHub CLI
$ gh skill install brycewang-stanford/Awesome-Journal-Skills acs-catalysis --agent claude-code

Project scope by default; add --scope user for a personal install. Needs GitHub CLI 2.90.0 or later (public preview).

Manual copy
$ git clone --depth 1 https://github.com/brycewang-stanford/Awesome-Journal-Skills.git skills-src && mkdir -p .claude/skills && cp -r skills-src/English-NaturalScience-Journal-Skills/skills/acs-catalysis .claude/skills/acs-catalysis && rm -rf skills-src

Use ~/.claude/skills/ instead of .claude/skills for a personal install. The folder must contain SKILL.md.

Claude Code skills documentation · loads skills from .claude/skills/

Facts

Skill name
acs-catalysis
GitHub stars
1.2k
Token cost
~2.1k tokens
SKILL.md length
882 words
Files
1
Skills in repo
2,387
Repo updated
First seen
Licence
MIT

At a glance

A skill your agent uses when targeting ACS Catalysis (ACS Catal) or deciding whether a catalysis manuscript fits this primary-research venue spanning heterogeneous, homogeneous, bio-, electro-, and…

  • Targeting ACS Catalysis (ACS Catal)
  • SKILL.md covers Journal positioning, When to trigger, Scope & topic fit and Method & evidence bar, plus 6 more sections
  • Instructions only: no scripts, shell commands, URLs or credentials in SKILL.md
  • Deciding whether a catalysis manuscript fits this primary-research venue spanning heterogeneous

What it does

Acs Catalysis is an agent skill from brycewang-stanford/Awesome-Journal-Skills. Use when targeting ACS Catalysis (ACS Catal) or deciding whether a catalysis manuscript fits this primary-research venue spanning heterogeneous, homogeneous, bio-, electro-, and photocatalysis. Encodes the journal's fit, framing, method-and-evidence bar, house style, official-submission re-check, and desk-reject heuristics.

Its SKILL.md is about 2.1k tokens, which your agent loads only when the skill is triggered. It is a single SKILL.md file with no bundled scripts.

The repository describes itself as: Journal-specific Claude Code/Codex skill packs covering mainstream journals — AER, QJE, Nature, Cell, 管理世界, 经济研究 & 200+ more — your fast track to getting published. | 覆盖主流期刊的… The licence is MIT.

When your agent uses it

  • Targeting ACS Catalysis (ACS Catal)
  • Deciding whether a catalysis manuscript fits this primary-research venue spanning heterogeneous

Example prompts

  • “/acs-catalysis”

What it can do on your machine

Read from SKILL.md and the folder at commit 932eb23. It shows what the files ask for, not the result of running them.

  • Tool permissions

    Pre-approves nothing: there is no allowed-tools line, so your agent's usual permission prompts apply.

    From allowed-tools in the SKILL.md frontmatter.

  • Runs code

    No scripts in the folder and no shell commands in SKILL.md.

    From the folder's file list and the shell code blocks in SKILL.md.

  • Network

    No URLs in SKILL.md.

    From URLs in SKILL.md, links to its own repository left out.

  • Credentials

    Names no API keys, tokens, secrets or passwords.

    From names ending in _API_KEY, _TOKEN, _SECRET, _KEY or _PASSWORD in SKILL.md.

Context cost

Acs Catalysis loads about 2.1k tokens when it runs. Until then it costs about 85 tokens; SKILL.md has 882 words of instructions outside code blocks.

Always · name and description, kept in context so the agent knows when to use it
~85
When it runs · the whole SKILL.md, loaded when a task matches
~2.1k

Estimates: characters ÷ 4, the usual rule of thumb; real counts depend on the model's tokenizer. Scripts and assets cost tokens only if the agent reads them.

Safety

Auto-check passed

The automated check found no risky patterns in SKILL.md.

Automated static check — not a guarantee. Review scripts before installing. It scans the text of SKILL.md for risky patterns (piping downloads into a shell, reading credential files, hidden Unicode, destructive commands); files beside SKILL.md are not scanned.

SKILL.md

The full file from brycewang-stanford/Awesome-Journal-Skills at commit 932eb23, republished under its MIT licence (© brycewang-stanford). 882 words, ~2,122 tokens.

Download SKILL.mdSave it as .claude/skills/acs-catalysis/SKILL.md (or your agent's skills folder).
name
acs-catalysis
description
Use when targeting ACS Catalysis (ACS Catal) or deciding whether a catalysis manuscript fits this primary-research venue spanning heterogeneous, homogeneous, bio-, electro-, and photocatalysis. Encodes the journal's fit, framing, method-and-evidence bar, house style, official-submission re-check, and desk-reject heuristics.

ACS Catalysis (acs-catalysis)

Journal positioning

ACS Catalysis is a high-impact American Chemical Society journal devoted to primary research across the full breadth of catalysis: heterogeneous, homogeneous, organocatalysis, biocatalysis, electrocatalysis, and photocatalysis. Its defining character is that it rewards work in which a catalytic advance is supported by an interlocking case of activity/selectivity data, characterization, and mechanistic insight — not activity numbers alone, and not characterization without a catalytic payoff. The journal sits at the center of the catalysis community: it expects rigorous, reproducible, and mechanistically grounded studies that move beyond empirical screening toward understanding of how and why a catalyst works. Readership spans synthetic chemists, materials and surface scientists, electrochemists, and enzymologists. This skill is a fit / venue-selection / re-framing tool. It does not replace the journal's current official guidelines. Before submitting, re-check the live author instructions on the ACS Catalysis site.

When to trigger

  • An author has a primary-research catalysis study and is choosing where mechanism, characterization, and performance together carry the paper.
  • A team is deciding between ACS Catalysis and Nature Catalysis or a broad chemistry venue, weighing impact against scope fit.
  • A manuscript reports a new catalyst, reaction, or mechanistic understanding and needs the journal's evidence bar — activity plus characterization plus mechanism — clarified before submission.
  • An author needs ACS Catalysis' expectations on controls, reproducibility, and mechanistic rigor, plus desk-reject criteria.

Scope & topic fit

  • Heterogeneous catalysis: supported metals, oxides, single-atom catalysts, zeolites — with structure–activity relationships and, ideally, operando/in situ characterization.
  • Homogeneous and organometallic catalysis: new catalytic transformations, ligand design, and mechanism established by kinetics, spectroscopy, or computation.
  • Electrocatalysis and photocatalysis: energy-relevant reactions (HER, OER, ORR, CO2 reduction, N2 reduction, water/CO2 photoreduction) with rigorous activity metrics and faradaic/quantum-efficiency reporting.
  • Biocatalysis and enzyme engineering: engineered or natural enzymes for synthetically or industrially useful transformations, with kinetic and structural support.
  • Organocatalysis and asymmetric catalysis: new modes of activation or selectivity with mechanistic and stereochemical analysis.
  • Catalysis-enabling methods and theory: computational mechanism, machine-learning descriptors, and characterization advances that yield genuine catalytic understanding.

Method & evidence bar

  • A catalytic claim must rest on the triad of performance, characterization, and mechanism; any single leg alone is typically insufficient.
  • Activity and selectivity must be reported with proper normalization (per active site/TOF where possible), conversion and yield, and appropriate controls including blanks and benchmark catalysts.
  • Characterization must establish the catalyst's actual state — composition, structure, and active site — with in situ/operando evidence favored over ex situ inference where the mechanism depends on it.
  • Mechanistic claims require kinetics, isotope or labeling studies, spectroscopic intermediates, or computation, not speculation; DFT must use justified models and be reconciled with experiment.
  • Stability and reproducibility are expected: cycle/durability data for materials, and enough experimental detail (loadings, conditions, error bars, replicates) for reproduction.
  • Electro-/photocatalysis must report standardized metrics (iR correction, faradaic efficiency, overpotential at defined current density, quantum/photonic efficiency) and rule out artifacts.

Structure & house style

  • Standard primary-research format (Introduction, Results and Discussion, Conclusions, Experimental/Methods) with a Supporting Information file carrying full procedures, spectra, and supplementary data.
  • A clear table-of-contents/abstract graphic is required and should communicate the catalytic advance at a glance.
  • Figures should integrate performance with characterization and mechanism; schemes for reactions and proposed cycles are expected where relevant.
  • The Introduction must position the work against the catalysis literature and state the specific advance; Results must foreground evidence, not narrative.
  • Methods/Experimental must be reproducible: catalyst synthesis, reaction conditions, instrument parameters, and quantification methods fully specified.
  • Article types include full Articles and Letters/Communications; re-check current length, figure, and Letter-format limits on the live site.
Show full SKILL.md (304 more words)Show less

Official-submission checklist

  • Before giving submission-ready advice, read ../../resources/source-basis.md and ../../resources/official-source-map.md; start from the official source anchors for this journal family, then cite the current ACS Catalysis page you checked.
  • Search the live site for "ACS Catalysis author guidelines" and follow the current ACS version.
  • Re-check article-type definitions and current word/figure limits, Letter vs Article criteria, and Supporting Information conventions.
  • Re-check ACS data-availability, characterization-data (e.g., NMR/crystallographic), and reproducibility-reporting requirements for the relevant catalysis subfield.
  • Re-check competing-interests, funding, ORCID, and AI-use disclosure requirements; confirm ChemRxiv preprint policy.
  • If the live official instructions conflict with this skill, the official instructions win.

Pre-submission self-check

  • One sentence — the catalytic advance and the mechanistic insight that explains it.
  • Performance, characterization, and mechanism are all present and mutually reinforcing, with appropriate controls and benchmarks.
  • Activity/selectivity metrics are correctly normalized and, for electro-/photocatalysis, reported with standardized parameters.
  • Catalyst state and active site are established by suitable (ideally in situ/operando) characterization.
  • Stability/reproducibility data and full experimental detail are in the SI for independent reproduction.
  • The work is positioned against recent ACS Catalysis / Nature Catalysis literature on the same reaction or catalyst class.

Common desk-reject triggers

  • An activity-screening study reporting performance numbers with no mechanistic insight or characterization of the working catalyst.
  • Characterization-heavy materials work with no meaningful catalytic evaluation or with poorly defined catalytic relevance.
  • Electro-/photocatalysis lacking standardized metrics, controls, or artifact exclusion (e.g., no faradaic efficiency, no iR correction, no blank).
  • Incremental catalyst tweaks without a clear advance over established benchmarks.
  • Mechanistic claims unsupported by kinetics, labeling, spectroscopy, or properly validated computation.

Re-routing decision

  • Higher-impact, conceptually transformative catalysis with broad significance: nature-catalysis.
  • Broad-chemistry primary research where catalysis is one facet of a wider advance: journal-of-the-american-chemical-society.
  • Authoritative catalysis review rather than primary research: chemical-reviews or chemical-society-reviews.
  • Energy-device-centric electro-/photocatalysis where the system, not the catalyst mechanism, is the contribution: energy-and-environmental-science or joule.

Output format

text
[Fit] High / Medium / Low (one-line reason)
[Target] ACS Catalysis
[Topic tags] <2–3 closest topics>
[Method/evidence] <do performance, characterization, and mechanism together support the catalytic claim, with proper metrics and controls?>
[Top risk] <the single most likely reason for rejection>
[Official items to re-check] <article-type limits / characterization & data requirements / standardized metrics / SI / disclosure / preprint>
[Re-route suggestion] <if not a fit, a better-matched venue>

© brycewang-stanford, MIT. Rendered from Markdown: HTML in the file is shown as text, images as links, and headings moved down two levels. Raw file

Files

Just SKILL.md in English-NaturalScience-Journal-Skills/skills/acs-catalysis of brycewang-stanford/Awesome-Journal-Skills.

Open the folder on GitHubat commit 932eb23

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Acs Catalysis next to the 5 skills that share the most tags, products or categories with it. Stars are the repository's; “used in” counts other GitHub owners with a copy.

Acs Catalysis compared with similar skills
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Acs Catalysis this skillbrycewang-stanford/Awesome-Journal-Skills1.2k—~2.1kAutomated safety check: PassMIT
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Implementing Mimecast Targeted Attack Protectionmukul975/Anthropic-Cybersecurity-Skills34k—~1.8kAutomated safety check: PassApache-2.0
Target Journalbrycewang-stanford/Auto-Empirical-Research-Skills4.6k—~1.1kAutomated safety check: PassCustom licence
Workflow Score To TargetMengTo/Skills6.7k—~1.3kAutomated safety check: PassMIT
Open Targets DBaipoch/medical-research-skills1.9k—~1.6kAutomated safety check: PassMIT

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Questions about Acs Catalysis

What does Acs Catalysis do?

A skill your agent uses when targeting ACS Catalysis (ACS Catal) or deciding whether a catalysis manuscript fits this primary-research venue spanning heterogeneous, homogeneous, bio-, electro-, and…. Acs Catalysis is an agent skill from brycewang-stanford/Awesome-Journal-Skills. Use when targeting ACS Catalysis (ACS Catal) or deciding whether a catalysis manuscript fits this primary-research venue spanning heterogeneous, homogeneous, bio-, electro-, and photocatalysis.

When should I use Acs Catalysis?

Acs Catalysis fits situations like: targeting ACS Catalysis (ACS Catal); deciding whether a catalysis manuscript fits this primary-research venue spanning heterogeneous.

How do I install Acs Catalysis in Claude Code?

Run `npx skills add brycewang-stanford/Awesome-Journal-Skills --skill acs-catalysis -a claude-code`. Or copy the skill folder (English-NaturalScience-Journal-Skills/skills/acs-catalysis in brycewang-stanford/Awesome-Journal-Skills) into .claude/skills/acs-catalysis in your project. Claude Code loads it when a task matches its description.

How do I install Acs Catalysis in Codex?

Run `npx skills add brycewang-stanford/Awesome-Journal-Skills --skill acs-catalysis -a codex`. Or copy the skill folder (English-NaturalScience-Journal-Skills/skills/acs-catalysis in brycewang-stanford/Awesome-Journal-Skills) into .agents/skills/acs-catalysis in your project. Codex loads it when a task matches its description.

Can I use Acs Catalysis in Cursor, Gemini CLI or GitHub Copilot?

Cursor, Gemini CLI, GitHub Copilot and OpenCode also load SKILL.md folders. With the skills CLI, run `npx skills add brycewang-stanford/Awesome-Journal-Skills --skill acs-catalysis -a cursor` (or -a gemini-cli, github-copilot or opencode for the others). To copy it by hand, put the folder in .cursor/skills/acs-catalysis, .gemini/skills/acs-catalysis, .github/skills/acs-catalysis and .opencode/skills/acs-catalysis in your project.

What does Acs Catalysis need to run?

SKILL.md names no scripts, command-line tools or credentials: Acs Catalysis is instructions for the agent only.

Does Acs Catalysis access the network?

SKILL.md contains no URLs. Any network use would come from the scripts or tools the agent runs. This is read from the text; nothing was executed.

Is Acs Catalysis safe to install?

Our automated static check of SKILL.md found no risky patterns, such as piping downloads into a shell, reading credential files or hidden Unicode. It is not a guarantee. Review the folder before installing.

What licence does Acs Catalysis use?

Acs Catalysis is published under the MIT licence (the repository's licence). It allows redistribution, so the full SKILL.md is shown on this page.

How many tokens does Acs Catalysis use?

About 2.1k tokens (SKILL.md is roughly 8.5k characters). Agents keep only the skill's name and description in context until a task matches; then they load SKILL.md in full.

What are the alternatives to Acs Catalysis?

Skills that share tags, products or a category with Acs Catalysis: Touch Targets (thedaviddias/Front-End-Checklist, 74k stars), Implementing Mimecast Targeted Attack Protection (mukul975/Anthropic-Cybersecurity-Skills, 34k stars), Target Journal (brycewang-stanford/Auto-Empirical-Research-Skills, 4.6k stars) and Workflow Score To Target (MengTo/Skills, 6.7k stars). The comparison table on this page puts their stars, adoption, token cost, safety result and licence side by side.

Who maintains Acs Catalysis?

brycewang-stanford (a GitHub user) maintains it in brycewang-stanford/Awesome-Journal-Skills, which has 1,231 GitHub stars. The repository holds 2,387 skills in this directory. The repository was last updated on September 27, 2026.

Source: brycewang-stanford/Awesome-Journal-Skills on GitHub. Facts on this page come from the repository at the commit we read; the author's words are quoted as theirs.