Specification
| MF | C6H15ClN2O2 |
|---|---|
| Molecular weight | 182.65 |
Values are typical for the standard grade. Tighter specifications are available — state the target in your inquiry and we confirm against the production batch.
| MF | C6H15ClN2O2 |
|---|---|
| Molecular weight | 182.65 |
Values are typical for the standard grade. Tighter specifications are available — state the target in your inquiry and we confirm against the production batch.
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.
C(CCN)C[C@@H](C(=O)O)N.Cl Last updated: unconfirmed
| Molecular formula | C₆H₁₅ClN₂O₂[1] |
| Molecular weight | 182.65 g/mol[1] |
| IUPAC name | (2S)-2,6-diaminohexanoic acid;hydrochloride[1] |
| SMILES | C(CCN)C[C@@H](C(=O)O)N.Cl[1] |
| InChIKey | BVHLGVCQOALMSV-JEDNCBNOSA-N[1] |
Synonyms: L-Lysine hydrochloride · 657-27-2 · L-Lysine monohydrochloride · lysine hydrochloride · L-Lysine, monohydrochloride
Data sources: PubChem (NLM/NIH)
Last updated: 2026-09-02
SCIENTIFIC RESEARCH
MOLECULE Per-CAS bibliography (live from 13+ databases)
Sources: db:pubmed (7) · db:crossref (3)
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 →No harmonised GHS classification for this substance — see the supplier's current safety data sheet (SDS).
References collected from all Safety Hub tabs. CAS: 657-27-2 ·
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.
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.
💡 Log in to save projects. Without logging in you can calculate but not save.
Drug-likeness radar chart (Lipinski Ro5 / Veber). Green zone = compliance with criteria.
Predictive data — properties calculated in silico (SMILES/RDKit). These do not replace clinical studies. Do not use for drug evaluation without experimental verification.
| Property | Value | Rating |
|---|---|---|
| Absorption (GI) | high | ✓ |
| BBB permeability | no | |
| Bioavailability (Daina 2017) | 55% | |
| CYP450 profile | CYP1A2 unknownCYP2C9 unknownCYP2C19 unknownCYP2D6 unknownCYP3A4 unknown | |
| PAINS alerts | 0 | ✓ |
| Brenk alerts | 0 | ✓ |
| pKa (pH 7.4) | 4.5 (predicted) | |
| hERG (cardiotox.) | — | |
| P-gp substrate | — | |
| Ames mutagenicity | ✓ no | |
| DILI (hepatotox.) | — | |
| LogS (aq. solub.) | — | |
657-27-2
— multi-criteria ranking (W12): 30% citations · 20% recency · 20% topic · 15% historical · 15% open access.
Molecule-specific scenarios, troubleshooting, and literature references
The predicted parameters for this molecule (CAS 657-27-2) are based on literature-backed models (Snyder-Dolan LSS, Neue pore-size rules).
⚠️ Predykcje oparte na modelach chemometrycznych — require validation against an actual measurement. Confidence: low/medium/high depending on the available descriptors.
Name + CAS + Grade + Role in method
HPLC vs LC-MS vs Far UV — when to use which
One-click add to cart
| 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 PLN/L | 70 PLN/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.
How much you save by using naszej metody zamiast alternatyw? Kwartalne koszty labu HPLC.
| Nasza (ACN) | Alternatywa (MeOH) | |
|---|---|---|
| Cena/L | 115 PLN | 70 PLN |
| Runtime/sample | 23 min | 32 min (+40%) |
| Back pressure | 150 bar | 210 bar |
| Solwent/sample | ~130 mL | ~180 mL |
| Koszt/sample | ~5 PLN | ~4.5 PLN |
| Czas/sample | 23 min | 32 min |
| Czas pracy chemika | — | — |
| Total/quarter | — | — |
| Nasza (z guard) | Bez guard | |
|---|---|---|
| Guard column | 200 PLN / 100 inj | — |
| Main column lifetime | 2000 inj | 500 inj |
| Columns / quarter | — | — |
| Guards / quarter | — | — |
| Downtime wymiany (h) | — | — |
| Total/quarter | — | — |
| Nasza (SOP template) | Custom dev | |
|---|---|---|
| Initial setup | 1 h (use template) | 40 h (screening of phases, columns, gradients) |
| Walidacja (ICH Q2) | 8 h | 24 h |
| Dokumentacja | 2 h (edit template) | 16 h |
| Ryzyko OOS w Q1 | ~2% | ~15% |
| Total (jednorazowo) | — | — |
| Fast (5 min) | Standard (23 min) | |
|---|---|---|
| Runtime/sample | 5 min | 23 min |
| Samples/8h shift | — | — |
| Shifts potrzebnych | — | — |
| Koszt pracy | — | — |
| Savings | — | — |
Source: ResearchGate
Source: r/chemistry
Source: Snyder LSS Model
Source: Chromatography Forum
| # | Time | %B start | %B end | Duration | Slope (Δ%B/min) | Step |
|---|
💡 Rule of thumb: slope 2-5 %B/min gives the best peak shape · dwell vol = empty tubing from the pump to the column (check a blank run without the column) · 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: Snyder Seminar
Source: LCGC
Source: Predictive modeling
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: Agilent App Notes
Source: Phenomenex Guide
Source: Phenomenex Knowledge
| Parameter | Value | Why |
|---|---|---|
| Wavelength | 210 nm (primary) + 254 nm (aromatic) | Uniwersalne dla COOH/C=O |
| Bandwidth | 4 nm | Balance of sensitivity 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 |
The method was designed in accordance with the regulations below. Click a badge to see compliance details.
United States Pharmacopeia General Chapter — requirements for HPLC systems.
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 — aligned with USP/EP harmonisation after 2020.
Reference: JP 18th Edition, General Chapter 2.00
Current Good Manufacturing Practice for pharmaceutical products (USA).
Reference: 21 CFR Part 211 — Current Good Manufacturing Practice
International standard for the competence of testing laboratories.
Reference: ISO/IEC 17025:2017
Comparison of our recommended method vs USP Monograph vs PubMed literature 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 |
| Particle size | 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 |
| Solvent cost/run | ~5 PLN/run | ~7 PLN/run | — | ~6 PLN/run |
Pick a symptom → see the most likely causes → click to see the fix.
Diagnoza: Column oven on? 30°C?
Fix: Turn the column thermostat on to 30°C.
Diagnoza: Method → DAD → Primary λ — check whether it is 210
Fix: Change the wavelength to 210 nm for compounds without aromatic rings.
Diagnoza: Status lampki na detektorze — zielona?
Fix: Turn on the lamp, wait 3-5 min for warm-up.
Diagnoza: Is the sample >0.1 mg/mL?
Fix: Increase the concentration 10× to 1 mg/mL.
Diagnoza: Do you filter samples through 0.22 μm?
Fix: Replace the column frit OR the guard column. In future, filter every sample.
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: Make fresh buffer 10 mM NH₄HCO₃ pH 7.0.
Diagnoza: Number of injections? >2000?
Fix: Regeneruj: flush 100% ACN 30 min, potem 100% MeOH 30 min.
Diagnoza: Fronting + tailing at the same time? Concentration >5 mg/mL?
Fix: Reduce inj. vol 10→5 μL or dilute 2×.
Source: USP Online
Source: ICH Q6A
Source: FDA Guidance
Particles >0.22 μm clog the column inlet frit. Pressure rises +50 bar per 100 injections. Column lifetime drops from 2000 to 500 injections. Filter cost: 2 PLN. Column cost: 1800 PLN.
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.
You injected the sample, you wait 23 min and... a flat line. Anxiety is rising.
Wavelength 254 nm does not work for most carboxylic acids — use 210 nm.
Day 90 stability pull. 6 batch × 2 repeats. W próbce widzę duplikaty peaków z poprzedniego dnia. OOS opened. 4 dni investigation. Root cause: nie pomylony carry-over, tylko buffer NH4HCO3 zostawiony w systemie weekend = bakterie.
NIGDY nie zostawiaj buforu w systemie >3 dni. Zawsze flush z 80% ACN/20% H2O przed weekendem. Koszt lekcji: 4 dni pracy + 3 batch release delay.
Do you have experience with this method? A problem you solved? A mishap you want to spare others? Write to us — after moderator approval it will appear here as „real case".
All scientific sources cited in the accordions above for CAS 657-27-2. Format: Chicago Manual of Style 17th ed., Author-Date system.