日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Ensemble distribution model of Muga Silkworm (Antheraea assamensis) and its primary host plant Soalu (Litsea monopetala) in defined climate space

在特定气候空间中,木加蚕(Antheraea assamensis)及其主要寄主植物木犀草(Litsea monopetala)的集合分布模型

Sarma, Kuladip; Chetry, Vivek; Bawri, Amal; Borah, Keshob Jyoti; Khanikor, Bulbuli; Kalita, Tarali; Mech, Banasri; Saikia, Malabika Kakati; Das, Manas

A high-spin alkylperoxo-iron(iii) complex with cis-anionic ligands: implications for the superoxide reductase mechanism

具有顺式阴离子配体的高自旋烷基过氧铁(III)配合物:对超氧化物还原酶机制的启示

Devi, Tarali; Dutta, Kuheli; Deutscher, Jennifer; Mebs, Stefan; Kuhlmann, Uwe; Haumann, Michael; Cula, Beatrice; Dau, Holger; Hildebrandt, Peter; Ray, Kallol

Acid-induced nitrite reduction of nonheme iron(ii)-nitrite: mimicking biological Fe-NiR reactions

酸诱导的非血红素铁(II)-亚硝酸盐的亚硝酸盐还原:模拟生物Fe-NiR反应

Kulbir; Das, Sandip; Devi, Tarali; Ghosh, Somnath; Chandra Sahoo, Subash; Kumar, Pankaj

Why intermolecular nitric oxide (NO) transfer? Exploring the factors and mechanistic aspects of NO transfer reaction

为什么会发生分子间一氧化氮(NO)转移?探究NO转移反应的影响因素和机理。

Das, Sandip; Kulbir; Ray, Soumyadip; Devi, Tarali; Ghosh, Somnath; Harmalkar, Sarvesh S; Dhuri, Sunder N; Mondal, Padmabati; Kumar, Pankaj

Oxygen atom transfer promoted nitrate to nitric oxide transformation: a step-wise reduction of nitrate → nitrite → nitric oxide

氧原子转移促进硝酸盐向一氧化氮的转化:硝酸盐逐步还原为亚硝酸盐,最终转化为一氧化氮。

Kulbir; Das, Sandip; Devi, Tarali; Goswami, Mrigaraj; Yenuganti, Mahesh; Bhardwaj, Prabhakar; Ghosh, Somnath; Chandra Sahoo, Subash; Kumar, Pankaj

Diversity of edible insects in a Natural World Heritage Site of India: entomophagy attitudes and implications for food security in the region

印度自然世界遗产地食用昆虫的多样性:食虫态度及其对该地区粮食安全的影响

Hazarika, Arup Kumar; Kalita, Unmilan; Khanna, Subhash; Kalita, Tarali; Choudhury, Sangeeta