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Cite this DOI

10.46243/jstj.2020.v5.i2.259 · Nanotechnology Impacting in Electronic Industries

APA (7th edition)

Kavitha, K., Mohamed Sikkander, A., & Rafi, S. K. (2020). Nanotechnology Impacting in Electronic Industries. *Journal of Science & Technology*, *05*(02), 32–37. https://doi.org/10.46243/jstj.2020.v5.i2.259

⬇ text Italics are shown as *asterisks* in plain text — the journal or book title and the volume.

BibTeX

@article{kavitha2020nanotechnology,
  author    = {Kavitha, K and Mohamed Sikkander, A and Rafi, S. K},
  title     = {{Nanotechnology Impacting in Electronic Industries}},
  journal   = {Journal of Science \& Technology},
  year      = {2020},
  volume    = {05},
  number    = {02},
  pages     = {32--37},
  publisher = {Longman Publishers},
  issn      = {2456-5660},
  doi       = {10.46243/jstj.2020.v5.i2.259},
  url       = {https://doi.org/10.46243/jstj.2020.v5.i2.259},
  language  = {en},
  abstract  = {\_0 Currently\_0 Science\_0 and\_0 Technology\_0 based\_0 research\_0 has\_0 been\_0 distorted\_0 for\_0 the\_0 rationale\_0 that\_0 of\_0 inventions\_0 and\_0 innovations\_0 been\_0 made\_0 within\_0 the\_0 field\_0 of\_0 visualizations,\_0 characterization,\_0 synthesis,\_0 materials\_0 and\_0 capability\_0 to\_0 commercially\_0 manufacture\_0 at\_0 10-9\_0 m\_0 scale\_0 level.\_0 At\_0 the\_0 dimension\_0 of\_0 10-9\_0 m\_0 (\_0 billionth\_0 of\_0 a\_0 meter\_0 )\_0 the\_0 capacity\_0 to\_0 make\_0 new\_0 and\_0 astonishing\_0 products\_0 and\_0 materials\_0 gets\_0 a\_0 incredible\_0 boost,\_0 this\_0 is\_0 often\_0 because\_0 at\_0 this\_0 scale\_0 we've\_0 the\_0 power\_0 to\_0 figure\_0 at\_0 atomic\_0 or\_0 molecular\_0 level\_0 and\_0 thus\_0 ready\_0 to\_0 create\_0 things\_0 which\_0 are\_0 extremely\_0 significant\_0 to\_0 current\_0 comparisons.Nanoelectronics \_0 and\_0 its\_0 industrial\_0 Applications\_0 a\_0 complicated\_0 meant\_0 to\_0 reinforce\_0 the\_0 knowledge\_0 domain\_0 of\_0 participants\_0 within\_0 the\_0 area\_0 of\_0 electronics.\_0 The\_0 extensive\_0 is\_0 well\_0 aware\_0 of\_0 the\_0 very\_0 fact\_0 that\_0 we\_0 sleep\_0 in\_0 the\_0 age\_0 of\_0 microelectronics,\_0 an\_0 expression\_0 which\_0 is\_0 resultant\_0 from\_0 the\_0 dimensions\_0 (1\_0 µm)\_0 of\_0 a\_0 device’s\_0 active\_0 zone,\_0 the\_0 channel\_0 length\_0 of\_0 a\_0 field\_0 effect\_0 transistor\_0 or\_0 the\_0 girth\_0 of\_0 a\_0 gate\_0 dielectric.\_0 However,\_0 there\_0 are\_0 convincing\_0 indications\_0 that\_0 we\_0 are\_0 inflowing\_0 another\_0 era,\_0 namely\_0 the\_0 age\_0 of\_0 nanotechnology.\_0 Nanotechnology\_0 is\_0 playing\_0 vital\_0 role\_0 to\_0 perk\_0 up\_0 the\_0 potential\_0 of\_0 electronic\_0 products.\_0 The\_0 proficiency\_0 skill\_0 also\_0 made\_0 the\_0 devices\_0 Very\_0 light\_0 making\_0 the\_0 manufactured\_0 goods\_0 easy\_0 to\_0 hold\_0 or\_0 move\_0 and\_0 at\_0 an\_0 equivalent\_0 time\_0 it's\_0 reduced\_0 the\_0 facility\_0 prerequisite.\_0 LCD\_0 and\_0 its\_0 improved\_0 versions\_0 are\_0 example.\_0 The\_0 eminence\_0 of\_0 display\_0 screens\_0 has\_0 enhanced\_0 tons\_0 while\_0 its\_0 size\_0 became\_0 very\_0 thick,\_0 decreased\_0 weight\_0 and\_0 abridged\_0 power\_0 consumption.\_0 Nanotechnology\_0 has\_0 finished\_0 size\_0 of\_0 chip\_0 very\_0 small\_0 but\_0 storage\_0 capacity\_0 up\_0 to\_0 1\_0 terabyte\_0 per\_0 sq\_0 in.\_0 These\_0 continually\_0 emergent\_0 applications\_0 include\_0 transistors,\_0 the\_0 essential\_0 switches\_0 that\_0 enable\_0 all\_0 recent\_0 computing,\_0 have\_0 shrunk\_0 and\_0 lesser\_0 through\_0 nanotechnology.\_0 Magnetic\_0 random\_0 access\_0 memory\_0 is\_0 making\_0 possible\_0 by\_0 nanometer‐scale\_0 magnetic\_0 channel\_0 junction\_0 and\_0 may\_0 rapidly\_0 and\_0 efficiently\_0 save\_0 data\_0 during\_0 a\_0 system\_0 blackout\_0 or\_0 change\_0 resume‐play\_0 features.Ultra-high\_0 description\_0 display\_0 and\_0 televisions\_0 are\_0 currently\_0 being\_0 sold\_0 that\_0 use\_0 quantum\_0 dots\_0 to\_0 manufacture\_0 supplementary\_0 vibrant\_0 colors\_0 while\_0 being\_0 more\_0 energy\_0 efficient.\_0 Flexible\_0 electronics\_0 are\_0 urbanized\_0 using,\_0 for\_0 instance,\_0 semiconductor\_0 nanomembranes\_0 for\_0 applications\_0 in\_0 smartphone\_0 and\_0 e-reader\_0 displays.\_0 In\_0 related\_0 nanomaterials\_0 like\_0 graphene\_0 and\_0 cellulosic\_0 nanomaterials\_0 are\_0 getting\_0 used\_0 for\_0 a\_0 variety\_0 of\_0 sorts\_0 of\_0 bendable\_0 electronics\_0 to\_0 facilitate\_0 wearable\_0 and\_0 “tattoo”\_0 sensors,\_0 photovoltaics\_0 which\_0 will\_0 be\_0 drapery\_0 onto\_0 clothing,\_0 and\_0 electronic\_0 paper\_0 which\_0 will\_0 be\_0 rolled\_0 up\_0 and\_0 doing.\_0 Interesting,\_0 flexible,\_0 lightweight,\_0 non-brittle,\_0 highly\_0 efficient\_0 electronics\_0 opens\_0 the\_0 door\_0 to\_0 countless\_0 elegant\_0 goods.\_0 Specially-receptive\_0 hearing\_0 aids;\_0 antimicrobial,antibacterial \_0 coatings\_0 on\_0 keyboards\_0 and\_0 telephone\_0 casing,\_0 conductive\_0 inks\_0 for\_0 written\_0 electronics\_0 for\_0 RFID,elegant\_0 cards,tidy\_0 packaging,\_0 and\_0 supple\_0 displays\_0 for\_0 e-book\_0 readers.\_0 Nanoparticle\_0 copper\_0 suspension\_0 are\_0 developed\_0 as\_0 a\_0 safer,\_0 cheaper,\_0 and\_0 more\_0 consistent\_0 choice\_0 to\_0 lead-based\_0 solder\_0 and\_0 other\_0 perilous\_0 materials\_0 commonly\_0 wont\_0 to\_0 fuse\_0 electronics\_0 within\_0 the\_0 congregation\_0 progression.\_0}
}

⬇ .bib

RIS (EndNote, Zotero, Mendeley)

TY  - JOUR
TI  - Nanotechnology Impacting in Electronic Industries
AU  - Kavitha, K
AU  - Mohamed Sikkander, A
AU  - Rafi, S. K
JO  - Journal of Science & Technology
PY  - 2020
DA  - 2020///
VL  - 05
IS  - 02
SP  - 32
EP  - 37
PB  - Longman Publishers
SN  - 2456-5660
LA  - en
AB  - _0 Currently_0 Science_0 and_0 Technology_0 based_0 research_0 has_0 been_0 distorted_0 for_0 the_0 rationale_0 that_0 of_0 inventions_0 and_0 innovations_0 been_0 made_0 within_0 the_0 field_0 of_0 visualizations,_0 characterization,_0 synthesis,_0 materials_0 and_0 capability_0 to_0 commercially_0 manufacture_0 at_0 10-9_0 m_0 scale_0 level._0 At_0 the_0 dimension_0 of_0 10-9_0 m_0 (_0 billionth_0 of_0 a_0 meter_0 )_0 the_0 capacity_0 to_0 make_0 new_0 and_0 astonishing_0 products_0 and_0 materials_0 gets_0 a_0 incredible_0 boost,_0 this_0 is_0 often_0 because_0 at_0 this_0 scale_0 we've_0 the_0 power_0 to_0 figure_0 at_0 atomic_0 or_0 molecular_0 level_0 and_0 thus_0 ready_0 to_0 create_0 things_0 which_0 are_0 extremely_0 significant_0 to_0 current_0 comparisons.Nanoelectronics _0 and_0 its_0 industrial_0 Applications_0 a_0 complicated_0 meant_0 to_0 reinforce_0 the_0 knowledge_0 domain_0 of_0 participants_0 within_0 the_0 area_0 of_0 electronics._0 The_0 extensive_0 is_0 well_0 aware_0 of_0 the_0 very_0 fact_0 that_0 we_0 sleep_0 in_0 the_0 age_0 of_0 microelectronics,_0 an_0 expression_0 which_0 is_0 resultant_0 from_0 the_0 dimensions_0 (1_0 µm)_0 of_0 a_0 device’s_0 active_0 zone,_0 the_0 channel_0 length_0 of_0 a_0 field_0 effect_0 transistor_0 or_0 the_0 girth_0 of_0 a_0 gate_0 dielectric._0 However,_0 there_0 are_0 convincing_0 indications_0 that_0 we_0 are_0 inflowing_0 another_0 era,_0 namely_0 the_0 age_0 of_0 nanotechnology._0 Nanotechnology_0 is_0 playing_0 vital_0 role_0 to_0 perk_0 up_0 the_0 potential_0 of_0 electronic_0 products._0 The_0 proficiency_0 skill_0 also_0 made_0 the_0 devices_0 Very_0 light_0 making_0 the_0 manufactured_0 goods_0 easy_0 to_0 hold_0 or_0 move_0 and_0 at_0 an_0 equivalent_0 time_0 it's_0 reduced_0 the_0 facility_0 prerequisite._0 LCD_0 and_0 its_0 improved_0 versions_0 are_0 example._0 The_0 eminence_0 of_0 display_0 screens_0 has_0 enhanced_0 tons_0 while_0 its_0 size_0 became_0 very_0 thick,_0 decreased_0 weight_0 and_0 abridged_0 power_0 consumption._0 Nanotechnology_0 has_0 finished_0 size_0 of_0 chip_0 very_0 small_0 but_0 storage_0 capacity_0 up_0 to_0 1_0 terabyte_0 per_0 sq_0 in._0 These_0 continually_0 emergent_0 applications_0 include_0 transistors,_0 the_0 essential_0 switches_0 that_0 enable_0 all_0 recent_0 computing,_0 have_0 shrunk_0 and_0 lesser_0 through_0 nanotechnology._0 Magnetic_0 random_0 access_0 memory_0 is_0 making_0 possible_0 by_0 nanometer‐scale_0 magnetic_0 channel_0 junction_0 and_0 may_0 rapidly_0 and_0 efficiently_0 save_0 data_0 during_0 a_0 system_0 blackout_0 or_0 change_0 resume‐play_0 features.Ultra-high_0 description_0 display_0 and_0 televisions_0 are_0 currently_0 being_0 sold_0 that_0 use_0 quantum_0 dots_0 to_0 manufacture_0 supplementary_0 vibrant_0 colors_0 while_0 being_0 more_0 energy_0 efficient._0 Flexible_0 electronics_0 are_0 urbanized_0 using,_0 for_0 instance,_0 semiconductor_0 nanomembranes_0 for_0 applications_0 in_0 smartphone_0 and_0 e-reader_0 displays._0 In_0 related_0 nanomaterials_0 like_0 graphene_0 and_0 cellulosic_0 nanomaterials_0 are_0 getting_0 used_0 for_0 a_0 variety_0 of_0 sorts_0 of_0 bendable_0 electronics_0 to_0 facilitate_0 wearable_0 and_0 “tattoo”_0 sensors,_0 photovoltaics_0 which_0 will_0 be_0 drapery_0 onto_0 clothing,_0 and_0 electronic_0 paper_0 which_0 will_0 be_0 rolled_0 up_0 and_0 doing._0 Interesting,_0 flexible,_0 lightweight,_0 non-brittle,_0 highly_0 efficient_0 electronics_0 opens_0 the_0 door_0 to_0 countless_0 elegant_0 goods._0 Specially-receptive_0 hearing_0 aids;_0 antimicrobial,antibacterial _0 coatings_0 on_0 keyboards_0 and_0 telephone_0 casing,_0 conductive_0 inks_0 for_0 written_0 electronics_0 for_0 RFID,elegant_0 cards,tidy_0 packaging,_0 and_0 supple_0 displays_0 for_0 e-book_0 readers._0 Nanoparticle_0 copper_0 suspension_0 are_0 developed_0 as_0 a_0 safer,_0 cheaper,_0 and_0 more_0 consistent_0 choice_0 to_0 lead-based_0 solder_0 and_0 other_0 perilous_0 materials_0 commonly_0 wont_0 to_0 fuse_0 electronics_0 within_0 the_0 congregation_0 progression._0
DO  - 10.46243/jstj.2020.v5.i2.259
UR  - https://doi.org/10.46243/jstj.2020.v5.i2.259
ER  -

⬇ .ris

CSL-JSON

{
    "type": "article-journal",
    "id": "10.46243/jstj.2020.v5.i2.259",
    "DOI": "10.46243/jstj.2020.v5.i2.259",
    "URL": "https://doi.org/10.46243/jstj.2020.v5.i2.259",
    "title": "Nanotechnology Impacting in Electronic Industries",
    "source": "Smart Scholars DOI Registry",
    "container-title": "Journal of Science & Technology",
    "author": [
        {
            "family": "Kavitha",
            "given": "K"
        },
        {
            "family": "Mohamed Sikkander",
            "given": "A"
        },
        {
            "family": "Rafi",
            "given": "S. K"
        }
    ],
    "issued": {
        "date-parts": [
            [
                2020
            ]
        ]
    },
    "volume": "05",
    "issue": "02",
    "page": "32-37",
    "publisher": "Longman Publishers",
    "language": "en",
    "abstract": "_0 Currently_0 Science_0 and_0 Technology_0 based_0 research_0 has_0 been_0 distorted_0 for_0 the_0 rationale_0 that_0 of_0 inventions_0 and_0 innovations_0 been_0 made_0 within_0 the_0 field_0 of_0 visualizations,_0 characterization,_0 synthesis,_0 materials_0 and_0 capability_0 to_0 commercially_0 manufacture_0 at_0 10-9_0 m_0 scale_0 level._0 At_0 the_0 dimension_0 of_0 10-9_0 m_0 (_0 billionth_0 of_0 a_0 meter_0 )_0 the_0 capacity_0 to_0 make_0 new_0 and_0 astonishing_0 products_0 and_0 materials_0 gets_0 a_0 incredible_0 boost,_0 this_0 is_0 often_0 because_0 at_0 this_0 scale_0 we've_0 the_0 power_0 to_0 figure_0 at_0 atomic_0 or_0 molecular_0 level_0 and_0 thus_0 ready_0 to_0 create_0 things_0 which_0 are_0 extremely_0 significant_0 to_0 current_0 comparisons.Nanoelectronics _0 and_0 its_0 industrial_0 Applications_0 a_0 complicated_0 meant_0 to_0 reinforce_0 the_0 knowledge_0 domain_0 of_0 participants_0 within_0 the_0 area_0 of_0 electronics._0 The_0 extensive_0 is_0 well_0 aware_0 of_0 the_0 very_0 fact_0 that_0 we_0 sleep_0 in_0 the_0 age_0 of_0 microelectronics,_0 an_0 expression_0 which_0 is_0 resultant_0 from_0 the_0 dimensions_0 (1_0 µm)_0 of_0 a_0 device’s_0 active_0 zone,_0 the_0 channel_0 length_0 of_0 a_0 field_0 effect_0 transistor_0 or_0 the_0 girth_0 of_0 a_0 gate_0 dielectric._0 However,_0 there_0 are_0 convincing_0 indications_0 that_0 we_0 are_0 inflowing_0 another_0 era,_0 namely_0 the_0 age_0 of_0 nanotechnology._0 Nanotechnology_0 is_0 playing_0 vital_0 role_0 to_0 perk_0 up_0 the_0 potential_0 of_0 electronic_0 products._0 The_0 proficiency_0 skill_0 also_0 made_0 the_0 devices_0 Very_0 light_0 making_0 the_0 manufactured_0 goods_0 easy_0 to_0 hold_0 or_0 move_0 and_0 at_0 an_0 equivalent_0 time_0 it's_0 reduced_0 the_0 facility_0 prerequisite._0 LCD_0 and_0 its_0 improved_0 versions_0 are_0 example._0 The_0 eminence_0 of_0 display_0 screens_0 has_0 enhanced_0 tons_0 while_0 its_0 size_0 became_0 very_0 thick,_0 decreased_0 weight_0 and_0 abridged_0 power_0 consumption._0 Nanotechnology_0 has_0 finished_0 size_0 of_0 chip_0 very_0 small_0 but_0 storage_0 capacity_0 up_0 to_0 1_0 terabyte_0 per_0 sq_0 in._0 These_0 continually_0 emergent_0 applications_0 include_0 transistors,_0 the_0 essential_0 switches_0 that_0 enable_0 all_0 recent_0 computing,_0 have_0 shrunk_0 and_0 lesser_0 through_0 nanotechnology._0 Magnetic_0 random_0 access_0 memory_0 is_0 making_0 possible_0 by_0 nanometer‐scale_0 magnetic_0 channel_0 junction_0 and_0 may_0 rapidly_0 and_0 efficiently_0 save_0 data_0 during_0 a_0 system_0 blackout_0 or_0 change_0 resume‐play_0 features.Ultra-high_0 description_0 display_0 and_0 televisions_0 are_0 currently_0 being_0 sold_0 that_0 use_0 quantum_0 dots_0 to_0 manufacture_0 supplementary_0 vibrant_0 colors_0 while_0 being_0 more_0 energy_0 efficient._0 Flexible_0 electronics_0 are_0 urbanized_0 using,_0 for_0 instance,_0 semiconductor_0 nanomembranes_0 for_0 applications_0 in_0 smartphone_0 and_0 e-reader_0 displays._0 In_0 related_0 nanomaterials_0 like_0 graphene_0 and_0 cellulosic_0 nanomaterials_0 are_0 getting_0 used_0 for_0 a_0 variety_0 of_0 sorts_0 of_0 bendable_0 electronics_0 to_0 facilitate_0 wearable_0 and_0 “tattoo”_0 sensors,_0 photovoltaics_0 which_0 will_0 be_0 drapery_0 onto_0 clothing,_0 and_0 electronic_0 paper_0 which_0 will_0 be_0 rolled_0 up_0 and_0 doing._0 Interesting,_0 flexible,_0 lightweight,_0 non-brittle,_0 highly_0 efficient_0 electronics_0 opens_0 the_0 door_0 to_0 countless_0 elegant_0 goods._0 Specially-receptive_0 hearing_0 aids;_0 antimicrobial,antibacterial _0 coatings_0 on_0 keyboards_0 and_0 telephone_0 casing,_0 conductive_0 inks_0 for_0 written_0 electronics_0 for_0 RFID,elegant_0 cards,tidy_0 packaging,_0 and_0 supple_0 displays_0 for_0 e-book_0 readers._0 Nanoparticle_0 copper_0 suspension_0 are_0 developed_0 as_0 a_0 safer,_0 cheaper,_0 and_0 more_0 consistent_0 choice_0 to_0 lead-based_0 solder_0 and_0 other_0 perilous_0 materials_0 commonly_0 wont_0 to_0 fuse_0 electronics_0 within_0 the_0 congregation_0 progression._0",
    "ISSN": "2456-5660"
}

⬇ .json What citeproc and reference managers read; the DOI system hands it out for Accept: application/vnd.citationstyles.csl+json, and so does this registry's resolver.

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