Related Experiment Video
Updated: Jan 20, 2026

Use of Principal Components for Scaling Up Topographic Models to Map Soil Redistribution and Soil Organic Carbon
Published on: October 16, 2018
Reconstruction of Soil Components into Multifunctional Freestanding Membranes
Jumi Deka1, Kundan Saha1, Tukhar Jyoti Konch1
1Department of Chemistry, Indian Institute of Technology Guwahati, Guwahati, 781039 Assam, India.
Abstract:
Multifunctional freestanding membranes are prepared by tuning the structure of ubiquitous soil components, viz. clay and humic acids. Cross-linking of exfoliated clay layers with purified humic acids not only conferred mechanical strength but also enhanced chemical robustness of the membranes. The percolated network of molecularly sized channels of the soil membranes exhibits characteristic nanofluidic phenomena. Electrical conductivity is induced to otherwise insulating soil membranes by heating in an inert atmosphere, without affecting their nanofluidic ionic conductivity. The soil membranes also provided a new platform to prepare and study mixed conducting materials. Strips of heated membranes are shown to exhibit excellent sensitivity toward NH3 gas under atmospheric conditions.
Related Concept Videos
09:44Use of Principal Components for Scaling Up Topographic Models to Map Soil Redistribution and Soil Organic Carbon
09:19Utilizing Soil Density Fractionation to Separate Distinct Soil Carbon Pools
09:09Layer-by-layer Synthesis and Transfer of Freestanding Conjugated Microporous Polymer Nanomembranes
The Soil Ecosystem
12:36High-throughput Siderophore Screening from Environmental Samples: Plant Tissues, Bulk Soils, and Rhizosphere Soils
04:40Electrostatic Method to Remove Particulate Organic Matter from Soil

