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Wavelength 254 nm nie działa dla większości kwasów karboksylowych — użyj 210 nm.

We already hold the harmonised entry for this substance.
We have not issued a safety data sheet for it yet.
Free, and generated automatically from the sources listed on this page. No person has reviewed it, and it describes the substance in general — not your material, your process or your intended market.
Section 9 — physicochemical properties: 10 of 22 established.
We show what is established and name what is not. Classification and identity are complete on every card; section 9 is where public data is thin.
Data transcribed from regulatory registers and technical literature, with the source and edition stated. It does not replace the supplier's safety data sheet. Fields without a recorded source are marked as such.
C1=CC(=CC=C1N)[N+](=O)[O-] Last updated: 2026-08-27
| Molecular formula | C6H6N2O2[1] |
| Molecular weight | 138.12 g/mol[1] |
| Melting point | 147.5 °C[1][2] |
| Boiling point | 332.22 °C[1] |
| Density | 1.4 g/cm³ |
| LogP (lipophilicity) | 1.4[1] |
| IUPAC name | 4-nitroaniline[1] |
| SMILES | C1=CC(=CC=C1N)[N+](=O)[O-][1] |
| InChIKey | TYMLOMAKGOJONV-UHFFFAOYSA-N[1] |
Synonyms: 4-NITROANILINE · p-Nitroaniline · 100-01-6 · 4-Nitrobenzenamine · p-Nitraniline
Data sources: PubChem (NLM/NIH)
Last updated: 2026-08-27
Spectra are fetched on demand from 9 sources. Each spectrum is stored in our database — the next time it is opened there are zero requests to the external API. Download JCAMP-DX / CSV / PNG for every spectrum without searching.
Reference source — no public API. Open in an external database:
🔗 IR/NMR/MS (SDBS) →Reference source — no public API. Open in an external database:
🔗 JP Monograph →Reference source — no public API. Open in an external database:
🔗 WHO INN →Reference source — no public API. Open in an external database:
🔗 DOAJ →GHS/CLP classification — Regulation (EC) No 1272/2008 + UN GHS Rev. 9 (2021).
✓ Harmonised classification pursuant to Annex VI of the CLP Regulation (EC) 1272/2008 (official, binding classification). Index number: 612-012-00-9.
Reference (Chicago): European Chemicals Agency. "o-nitroaniline, Index No. 612-012-00-9." In Table 3 of Annex VI to Regulation (EC) No 1272/2008 (CLP Regulation), 23rd Adaptation to Technical Progress (harmonised list as of 2026-07-07). Helsinki: European Chemicals Agency, 2026. https://echa.europa.eu/information-on-chemicals/annex-vi-to-clp.
Translations: CLP Regulation (EC) 1272/2008, Annexes III and IV. Data: PubChem/NLM.
References collected from all Safety Hub tabs. CAS: 100-01-6 ·
PubChem ↗
Tabs with their own references (Emergency, PPE, Storage, Waste) contain additional bibliographic entries within their respective sections.
Paste a series of replicate measurements (CSV, or one number per line). The calculator computes the mean, standard deviation and 95% CI, and detects outliers (Grubbs + Dixon Q).
x̄ = Σxᵢ / n — arithmetic means² = Σ(xᵢ - x̄)² / (n-1) — sample variances = √s² — standard deviationRSD% = (s / x̄) × 100% — relative standard deviationCI₉₅ = x̄ ± t(0.05, n-1) × s / √n — Student's tG = |xᵢ - x̄| / s — Grubbs' testQ = |xsuspect - xnearest| / |xmax - xmin| — Dixon Q-testSource: ICH Q2(R2) Validation of Analytical Procedures · ICH PDF ↗
Choose a buffer from the list of 20 popular systems → enter the target pH → get an exact recipe with the masses to weigh out.
Sources: ADR 2025 ↗ · IATA DGR ↗ · IMDG Code ↗
Plan your entire laboratory project: add experiments with reagents, replicates, and duration. You'll get a Gantt chart, a shopping list (with links to the store!), a budget with a 10% margin, and a GHS risk matrix.
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100-01-6
— multi-criteria ranking (W12): 30% citations · 20% recency · 20% topic · 15% historical · 15% open access.
Molecule-specific scenarios, troubleshooting, and literature references
Przewidywane parametry dla tej molekuły (CAS 100-01-6) bazują na literature-backed models (Snyder-Dolan LSS, Neue pore-size rules).
⚠️ Predykcje oparte na modelach chemometrycznych — wymagają walidacji z rzeczywistym pomiarem. Confidence: low/medium/high zależnie od dostępnych deskriptorów.
Name + CAS + Grade + Role in method
HPLC vs LC-MS vs Far UV — when to use which
Volumes required for the selected method
| Property | Acetonitrile (ACN) | Methanol (MeOH) |
|---|---|---|
| Viscosity (20°C) | 0.37 cP | 0.59 cP (+59%) |
| Back Pressure | ~150 bar | ~210 bar (+40%) |
| UV Cutoff | 190 nm | 205 nm |
| Elution Strength | Stronger | Weaker |
| Price (typical) | 115 zł/L | 70 zł/L (-39%) |
H = A + B/u + Cu
Higher viscosity (MeOH) → lower optimal flow rate → longer runtime.
Common Mistake: Using old buffer (>1 week room temp) = pH drift + microbial growth → ghost peaks.
Source: Snyder LSS Model
Source: ResearchGate
Source: Chromatography Forum
Source: r/chemistry
| # | Time | %B start | %B end | Duration | Slope (Δ%B/min) | Step |
|---|
💡 Rule of thumb: slope 2-5 %B/min daje best peak shape · dwell vol = puste rurki od pompy do kolumny (sprawdź blank run bez kolumny) · k*·t0 ≥ 3 dla Rs ≥ 2.0.
Log k = log kw − S·φ, gdzie φ = fraction B. Optymalny gradient: Δφ ≈ 0.6–0.8 per 5 t0. Dla kolumny 250×4.6mm @ 1 mL/min → t0 ≈ 2 min → gradient 10–12 min.
Source: Predictive modeling
Source: Snyder Seminar
Source: LCGC
150×4.6 mm · 3.5 μm · pH 2–9
150×4.6 mm · 3.5 μm · pH 1–12 (high pH)
100×4.6 mm · 2.6 μm core-shell · fast
Source: Phenomenex Knowledge
Source: Phenomenex Guide
Source: Agilent App Notes
| Parameter | Value | Why |
|---|---|---|
| Wavelength | 210 nm (primary) + 254 nm (aromatic) | Uniwersalne dla COOH/C=O |
| Bandwidth | 4 nm | Balans czułości vs selectivity |
| Response time | 0.5 s | Zgodne z peak width ~5 s |
| Reference λ | 360 nm, bw 100 nm | Kompensacja baseline drift |
| Parameter | Acceptance | Formula |
|---|---|---|
| Resolution (Rs) | ≥ 2.0 | 2(tR2 − tR1) / (w1 + w2) |
| Tailing factor (Tf) | ≤ 1.5 | W0.05 / (2·f) |
| Plates (N) | ≥ 5000 | 16·(tR / w)² |
| RSD (6 injections) | ≤ 2.0% | σ / μ × 100% |
| Linearity (R²) | ≥ 0.9990 | 80–120% spec, 5 levels |
Metoda zaprojektowana zgodnie z poniższymi regulacjami. Kliknij badge aby zobaczyć szczegóły compliance.
United States Pharmacopeia General Chapter — wymagania dla HPLC systemów.
Reference: USP-NF 2024, General Chapter <621> Chromatography
International Council for Harmonisation — walidacja metod analitycznych.
Reference: ICH Q2(R1) Validation of Analytical Procedures, 2005
European Pharmacopoeia — chromatographic separation techniques.
Reference: EP 11.0, Chapter 2.2.46
Japanese Pharmacopoeia — zgodne z harmonizacją USP/EP po 2020.
Reference: JP 18th Edition, General Chapter 2.00
Current Good Manufacturing Practice dla produktów farmaceutycznych (USA).
Reference: 21 CFR Part 211 — Current Good Manufacturing Practice
Międzynarodowy standard dla kompetencji laboratoriów testowych.
Reference: ISO/IEC 17025:2017
Porównanie naszej zalecanej metody vs USP Monograph vs Literatura PubMed vs Vendor Application Note.
| Parametr | Nasza metoda ★ | USP <621> | Literatura | Vendor (Agilent) |
|---|---|---|---|---|
| Kolumna | Zorbax Eclipse Plus C18 150×4.6 mm | L1 (C18, bonded, 5 μm) | n/a (brak PubMed refs dla tego CAS) | Zorbax SB-C18 150×4.6 mm |
| Wielkość ziarna | 3.5 μm | 5 μm (USP default) | — | 5 μm |
| Faza A | 10 mM NH₄HCO₃ pH 7.0 | Phosphate buffer pH 2.5 | — | 0.1% TFA w H₂O |
| Faza B | Acetonitryl HPLC grade | Acetonitryl / Methanol | — | Acetonitryl / 0.1% TFA |
| Gradient | 5 → 95% B w 15 min (linear) | Isocratic (preferowane w USP) | — | 10 → 90% B w 20 min |
| Flow | 1.0 mL/min | 1.5 mL/min | — | 1.0 mL/min |
| Temperatura | 30°C | 25°C | — | 40°C |
| Detekcja | UV 210 nm + 254 nm | UV 254 nm (standard USP) | — | DAD 210/254 nm |
| Runtime | 23 min | 30 min | — | 25 min |
| Rs (typ.) | 2.3 | ≥ 2.0 | — | 2.1 |
| Walidacja | USP <621> + ICH Q2(R1) | USP <621> obligatoryjnie | — | Application note only |
| Koszt solventów/run | ~5 zł/run | ~7 zł/run | — | ~6 zł/run |
Wybierz symptom → zobacz najbardziej prawdopodobne przyczyny → kliknij aby zobaczyć fix.
Diagnoza: Column oven włączony? 30°C?
Fix: Włącz column thermostat 30°C.
Diagnoza: Method → DAD → Primary λ — sprawdź czy 210
Fix: Zmień wavelength na 210 nm dla związków bez aromatyki.
Diagnoza: Status lampki na detektorze — zielona?
Fix: Włącz lampę, czekaj 3-5 min warm-up.
Diagnoza: Czy próbka >0.1 mg/mL?
Fix: Zwiększ stężenie 10× do 1 mg/mL.
Diagnoza: Czy filtrujesz próbki 0.22 μm?
Fix: Wymień column frit LUB guard column. W przyszłości filtruj każdą próbkę.
Diagnoza: Jaki slope %B/min?
Fix: Zwolnij gradient: 13→56% B w 20 min zamiast 15 min.
Diagnoza: Flow 1.5 mL/min?
Fix: Zmniejsz do 0.8 mL/min.
Diagnoza: Zmierz pH bufora — 7.0±0.2?
Fix: Zrób fresh buffer 10 mM NH₄HCO₃ pH 7.0.
Diagnoza: Liczba wstrzyknięć? >2000?
Fix: Regeneruj: flush 100% ACN 30 min, potem 100% MeOH 30 min.
Diagnoza: Fronting + tailing jednocześnie? Stężenie >5 mg/mL?
Fix: Zmniejsz inj. vol 10→5 μL lub rozcieńcz 2×.
Source: USP Online
Source: ICH Q6A
Source: FDA Guidance
Cząstki >0.22 μm zatykają inlet frit kolumny. Pressure rośnie +50 bar per 100 wstrzyknięć. Column lifetime spada z 2000 do 500 wstrzyknięć. Filter cost: 2 zł. Column cost: 1800 zł.
Full protocol with all parameters
GMP-compliant SOP template
ICH Q2(R1) validation template
All references in BibTeX format
Real chemists' mishaps — what happened, what helped, what to avoid.
Wstrzyknęłaś próbkę, czekasz 23 min i... płaska linia. Niepokój rośnie.
Wavelength 254 nm nie działa dla większości kwasów karboksylowych — użyj 210 nm.
Q1 audit: column cost +340% vs Q4. QA blame na lab. Investigation: nowy operator używał 0.45 μm filtra zamiast 0.22 μm. Microparticles przeszły przez guard i zabijały główne kolumny na 100. injection.
Filter SOP musi być WRITTEN i sprawdzany co batch. 0.22 μm jest standardem per USP . Koszt błędu: 10 kolumn × 1800 zł = 18,000 zł + audit finding.
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All scientific sources cited in the accordions above for CAS 100-01-6. Format: Chicago Manual of Style 17th ed., Author-Date system.