Lignocellulosic biomass-based materials: a promising resource for viable energy storage

被引:2
作者
Islam, Md. Merajul [1 ]
机构
[1] IIMT Univ, Sch Basic Sci & Technol, Meerut 250001, Uttar Pradesh, India
关键词
GEL POLYMER ELECTROLYTE; HIERARCHICAL POROUS CARBON; CONDUCTIVE CELLULOSE NANOCRYSTALS; FUNCTIONALIZED GRAPHENE HYDROGEL; SOLID-STATE SUPERCAPACITORS; ATOM FORCE-FIELD; LI-ION BATTERIES; RICE HUSK ASH; HIGH-PERFORMANCE; BACTERIAL CELLULOSE;
D O I
10.1039/d4se00038b
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The focus and driving force behind the advancement of energy storage devices is the demand for the development of electrochemical energy storage systems using abundant, renewable, eco-friendly, and cost-effective materials. Lignocellulosic-based materials are attracting considerable attention in the energy storage industry because of their potential to serve as high-performance electrodes, electrolytes, separators, and binders for supercapacitors and batteries. The use of lignocellulose-based materials in devices presents numerous benefits, such as sustainability, biodegradability, environmental friendliness, and cost-effectiveness. The use of lignocellulosic biomass for the manufacture of materials for energy storage devices has been shown to improve their performance. The materials exhibit chemical, mechanical, and structural features that are suitable for meeting the demands of energy storage devices. The devices demonstrate enhanced capacities, greater energy and power densities, extended lifecycles, and enhanced safety. Lignocellulosic-based materials have shown great promise as electrodes, electrolytes, separators, and binders, working very well in all of these roles. The purpose of this critical review is to analyse the recent advancements in the field of lignocellulosic-based materials and their application in supercapacitors and batteries. The paper includes a brief examination of the several theoretical models used to describe lignocellulose-based materials. Lastly, this paper also includes an analysis of future prospects and the challenges that may arise. The focus and driving force behind the advancement of energy storage devices is the demand for the development of electrochemical energy storage systems using abundant, renewable, eco-friendly, and cost-effective materials.
引用
收藏
页码:1823 / 1871
页数:49
相关论文
共 351 条
  • [1] Abomohra A. E. F., 2019, BIOMASS BIOENERGY RE, P1
  • [2] Toward reliable density functional methods without adjustable parameters: The PBE0 model
    Adamo, C
    Barone, V
    [J]. JOURNAL OF CHEMICAL PHYSICS, 1999, 110 (13) : 6158 - 6170
  • [3] Biopolymer hybrid electrodes for scalable electricity storage
    Admassie, S.
    Ajjan, F. N.
    Elfwing, A.
    Inganas, O.
    [J]. MATERIALS HORIZONS, 2016, 3 (03) : 174 - 185
  • [4] Charge storage properties of biopolymer electrodes with (sub)tropical lignins
    Admassie, Shimelis
    Nilsson, Ting Yang
    Inganas, Olle
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2014, 16 (45) : 24681 - 24684
  • [5] A renewable biopolymer cathode with multivalent metal ions for enhanced charge storage
    Admassie, Shimelis
    Elfwing, Anders
    Jager, Edwin W. H.
    Bao, Qinye
    Inganas, Olle
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2014, 2 (06) : 1974 - 1979
  • [6] Ahmad N, 2019, LIGNOCELLULOSE FOR FUTURE BIOECONOMY, P135, DOI 10.1016/B978-0-12-816354-2.00008-6
  • [7] Biowaste-derived graphitic carbon interfaced TiO2 as anode for lithium-ion battery
    Ahmed, Abu Talha Aqueel
    Soni, Ritesh
    Ansari, Abu Saad
    Lee, Chang Young
    Kim, Hyun-Seok
    Im, Hyunsik
    Bathula, Chinna
    [J]. SURFACES AND INTERFACES, 2022, 35
  • [8] Cellulose nanofibrils-adsorption with poly(amideamine) epichlorohydrin studied by QCM-D and application as a paper strength additive
    Ahola, Susanna
    Osterberg, Monika
    Laine, Janne
    [J]. CELLULOSE, 2008, 15 (02) : 303 - 314
  • [9] Aifantis Katerina E, 2010, HIGH ENERGY DENSITY, DOI [10.1002/9783527630011, DOI 10.1002/9783527630011.CH6]
  • [10] Effect of Sulfonation Level on Lignin/Carbon Composite Electrodes for Large-Scale Organic Batteries
    Ail, Ujwala
    Phopase, Jaywant
    Nilsson, Jakob
    Khan, Zia Ullah
    Inganas, Olle
    Berggren, Magnus
    Crispin, Xavier
    [J]. ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2020, 8 (49): : 17933 - 17944