From advmat-skills
Guides authors on required characterization and experimental detail for Advanced Materials manuscripts, including multi-technique triangulation, benchmarking, and partitioning content between main text and Supporting Information.
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- Your structure or phase assignment rests on a single technique
An Adv. Mater. claim about a material must be triangulated by complementary techniques, not asserted from one. A single XRD pattern or one TEM image is rarely enough; referees expect the structure–composition–property picture to close from several independent angles.
A practical characterization matrix (adapt to your material class):
| Claim you are making | Do not rely on one technique — triangulate with |
|---|---|
| Crystal structure / phase | XRD (+ Rietveld) and electron diffraction (SAED) / HRTEM lattice |
| Morphology / size / architecture | SEM and TEM (+ statistics over many particles, not one hero image) |
| Composition / oxidation state | XPS and EDS/EELS mapping and ICP-MS/AES for bulk stoichiometry |
| Local bonding / defects | Raman / FTIR / XAS (XANES/EXAFS), NMR where applicable |
| Optoelectronic property | UV-vis / PL / TAS + the transport or device measurement it predicts |
| Electrochemical performance | CV + galvanostatic cycling + rate/stability data + post-mortem analysis |
State uncertainties and sample counts. "n = 3 devices, mean ± s.d." beats a single best cell.
Adv. Mater. device claims live or die on fair comparison to the state of the art. Put the comparison in the paper, on equal footing:
| Detail type | Main text / Experimental Section | Supporting Information |
|---|---|---|
| Core synthesis route + key parameters | Experimental Section (reproducible) | full optimization sweeps |
| The decisive characterization proving the claim | main-text figure | extended datasets, more samples |
| Device fabrication + measurement protocol | Experimental Section | full protocols, control devices |
| Benchmarking vs. state of the art | main text | full comparison table + refs |
| Statistics on the headline metric | main text (n, mean ± s.d.) | per-sample data, histograms |
| Instrument models / settings | Experimental Section (concise) | exhaustive parameters |
The Experimental Section must let a competent group reproduce the material. Detail that is essential-but-bulky (full recipes, calibration, secondary controls) goes to the SI and is cited inline.
resources/external_tools.md for the DFT/simulation stack).【Central material claim】...
【Triangulation】technique 1 / technique 2 / technique 3 — sufficient? yes / add: ...
【Morphology statistics】present? yes / fix
【Benchmarking vs. SOTA】in main text, fair, cited? yes / fix
【Metric statistics】n + spread stated? yes / fix
【Reproducibility】Experimental Section reproducible? yes / fix
【Next】advmat-figures (characterization figure) or advmat-supplementary (SI partition)
Data-availability, reproducibility, and characterization-reporting expectations evolve — verify current Wiley Advanced Materials policy on the official author page.
npx claudepluginhub brycewang-stanford/awesome-journal-skills --plugin advmat-skillsPartitions content between an Advanced Materials main text and its Supporting Information, ensuring the paper stands alone while extended data, experimental details, and secondary characterization go into the SI. Organizes SI sections and citations.
Guides authors on targeting Advanced Materials (Wiley) for materials science manuscripts, covering fit, framing, evidence bar, house style, and desk-reject heuristics.
Decides what methodological detail stays in a Physical Review Letters body versus Supplemental Material, following the trust-minimum principle for physicists.