What absorbs at 1765 cm⁻¹ in an FTIR spectrum?
A band near 1765 cm⁻¹ can point to several functional groups. Below are the most likely assignments, ranked by how much published evidence supports each — every one traceable to literature (DOI) and cross-validated against our 130,000+ reference spectra and knowledge graph.
Backed by 8 cited sources
快速回答
A band near 1765 cm⁻¹ is usually interpreted by checking which functional groups repeatedly co-occur there in the literature, then confirming at least one or two additional peaks in the same sample. This page ranks those assignments by accumulated evidence rather than by a single fixed textbook rule.
可能的官能基指派
| 官能基 | 支持事實 | 引用來源 | 最高信心 |
|---|---|---|---|
| Carbonyl (C=O) | 7 | 7 | 1.0 |
| Carboxyl (COOH) | 4 | 4 | 1.0 |
| Methacrylate | 3 | 3 | 1.0 |
| Ketone | 3 | 3 | 1.0 |
| Ester | 3 | 3 | 1.0 |
| Amide | 3 | 3 | 1.0 |
| Acetate | 3 | 3 | 1.0 |
| Anhydride | 1 | 1 | 1.0 |
| N h | 1 | 1 | 1.0 |
排名反映累積的文獻證據,而非單一權威規則。請務必根據您的樣品背景進行確認。
可能的材料
| 材料 | 支持峰 | 重疊基團 | 引用來源 |
|---|---|---|---|
| polypropylene | 1765, 1030, 1600 | Methacrylate, Carbonyl (C=O) | 1 |
| Polyester | 1765, 1700, 1250 | Carbonyl (C=O), Methacrylate | 1 |
| PLGA | 1765, 3200, 1741 | Carbonyl (C=O), Methacrylate | 1 |
| glycerol | 1765, 1585, 1630 | Methacrylate, Carbonyl (C=O), Carboxyl (COOH) | 1 |
| polyimide | 1765, 1720, 1778 | Carbonyl (C=O), Methacrylate, Carboxyl (COOH) | 1 |
僅當同一文獻庫支援此波段以及至少一個額外特徵峰時,才會顯示材料。
光譜邏輯
This band becomes meaningful only when read with its neighboring peaks. In practice, analysts first look at the assignments above, then check whether the same sample also shows other peaks expected for the same structural motif. A lone band near 1765 cm⁻¹ is usually not enough for material identification by itself.
實際使用
此類查詢常見於聚合物鑑別、未知塑膠篩選、品管故障排除、再生材料驗證,以及基於文獻的峰值歸屬審查。
常見錯誤
- 將一個孤立的譜帶視為材料的證據,而未檢查至少一兩個支持峰。
- 忽略重疊:多個官能團可能在相同波數附近貢獻。
- 當添加劑、混合物、氧化或污染物可能扭曲譜圖時,跳過驗證。
驗證建議
當仍然存在歧義時,使用DSC、GC-MS或TGA驗證假設,特別是對於混合物、降解樣品和填充聚合物。
這些指派背後的文獻
-
Carboxyl (COOH) 信心 1.0
“Polyethylene acid, phthylic acid, octadecatrienoic acid, acetic acid, samples oxidized when kept in oven for 10 days as hexanoic acid, octadeconoic acid, butanoic acid, oxamcm-1.(- indicated by the absorption band around 1765 imidic acid, u”
Biodegradation of thermally treated high-density polyethylene (HDPE) by Klebsiella pneumoniae CH001 DOI: 10.1007/s13205-017-0959-3 -
Carbonyl (C=O) 信心 1.0
“Explicit assignment in text.”
Formulation, optimization, and characterization of amlodipine besylate loaded polymeric nanoparticles DOI: 10.1177/09673911211056154 -
Acetate 信心 1.0
“The table peaks a strong C=O stretch of carboxylic (1765cm-1), (1625cm-1), also shows at which range of temperatures were certain acid monomers N-H bending in-”
Masite 等 - 2022 - Trace Metals, Crude Protein, and TGA-FTIR Analysis DOI: 10.1155/2022/1509569 -
Carbonyl (C=O) 信心 1.0
“Amide I (urea) 1690 1687 1680 C=O carbonyl stretching vibration (intensity less) 1765”
Rangel-Vazquez 等 - 2014 - Spectroscopy Analyses of PolyurethanePolyaniline DOI: 10.1590/0104-1428.1496 -
Acetate 信心 1.0
“In the next step, citraconic anhydride was observable by the band at 1840 cm-1 and 1765 cm-1 (C=O stretching of anhydride compounds) and 920 cm-1 (C-O stretching of the C-O-C) [43,44].”
Bio-Based Phosphate-Containing Polyester for Improvement of Fire Reaction in Wooden Particleboard DOI: 10.3390/polym15051093 -
Acetate 信心 1.0
“The peaks relevant to this study are highlighted in Figure 2, and the remaining combinations of 1.31-36 vibrational modes are represented by the dashed lines and summarized in Table It N should be noted that the unhydrolyzed acid chloride C”
Quantifying Carboxylic Acid Concentration in Model Polyamide Desalination Membranes via Fourier Transform Infrared Spectroscopy DOI: 10.1021/acs.macromol.8b01194. -
Carbonyl (C=O) 信心 0.9
“Well established with C=O.”
Mechanical and tribological characterization of CNx films deposited by d.c. magnetron sputtering DOI: 10.1002/pssc.200675911 -
信心 0.9
“Explicit: 'bands initially present at 1695 and 1765 characteristic of PMDA C=O stretching'”
Innovative polypropylene based blends by in situ polymerization of a polyimide dispersed phase by reactive extrusion DOI: 10.1016/j.polymer.2022.125022
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