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用于木材共价修饰的新型烟碱类结构:一种环保的木材防虫方法。

Novel nicotinoid structures for covalent modification of wood: an environmentally friendly way for its protection against insects.

作者信息

Söftje Martin, Acker Sophie, Plarre Rudy, Namyslo Jan C, Kaufmann Dieter E

机构信息

Institute of Organic Chemistry, Clausthal University of Technology Leibnizstraße 6 38678 Clausthal-Zellerfeld Germany

Bundesanstalt für Materialforschung und -prüfung Unter den Eichen 87 12205 Berlin Germany.

出版信息

RSC Adv. 2020 Apr 21;10(27):15726-15733. doi: 10.1039/d0ra02071k.

Abstract

Timber is constantly exposed to environmental influences under outdoor conditions which limits its lifetime and usability. In order to counteract the damaging processes caused by insects, we have developed a novel and more environmentally friendly method to protect wood materials covalent modification by organic insecticides. Starting with an important class of synthetic insecticides which are derived from the natural insecticide nicotine, various new carboxylic acid derivatives of imidacloprid were made accessible. These activated neonicotinoids were utilized for the chemical modification of wood hydroxy groups. In contrast to conventional wood preservation methods in which biocides are only physically bound to the surface for a limited time, the covalent fixation of the preservative guarantees a permanent effect against wood pests, demonstrated in standardized biological tests. Additionally, the environmental interaction caused by non-bound neonicotinoids is significantly reduced, since both, a smaller application rate is required and leaching of the active ingredient is prevented. By minimizing the pest infestation, the lifetime of the material increases while preserving the natural appearance of the material.

摘要

木材在户外条件下不断受到环境影响,这限制了其使用寿命和可用性。为了对抗昆虫造成的破坏过程,我们开发了一种新颖且更环保的方法来保护木材材料——通过有机杀虫剂进行共价改性。从一类重要的合成杀虫剂开始,这类杀虫剂衍生自天然杀虫剂尼古丁,制备了各种新的吡虫啉羧酸衍生物。这些活化的新烟碱类化合物被用于木材羟基的化学改性。与传统的木材防腐方法不同,在传统方法中,杀生物剂仅在有限时间内物理结合在表面,而防腐剂的共价固定保证了对木材害虫的永久效果,这在标准化生物测试中得到了证明。此外,由于所需施用量较小且防止了活性成分的浸出,未结合的新烟碱类化合物引起的环境相互作用显著降低。通过最大限度地减少害虫侵扰,材料的使用寿命得以延长,同时保持材料的自然外观。

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